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High Energy Physics and Physical Mathematics

[1] A. Adams, D. A. Roberts, and O. Saremi. Hawking-Page transition in holographic massive gravity. Phys. Rev. D, 91(4):046003, February 2015.

[2] S. L. Adler. SU(8) family unification with boson-fermion balance. In- ternational Journal of Modern Physics A, 29:50130, August 2014.

[3] Stephen L. Adler and Fethi M. Ramazano. Spherically symmetric vacuum solutions arising from trace dynamics modifications to gravi- tation. INTERNATIONAL JOURNAL OF MODERN PHYSICS D, 24(2):1550011, FEB 2015.

[4] K. Agashe, R. Franceschini, and D. Kim. Using energy peaks to mea- sure new particle masses. Journal of High Energy Physics, 11:59, November 2014.

[5] P. Agrawal, B. Batell, P. J. Fox, and R. Harnik. WIMPs at the galactic center. J. Cosmology & Astroparticle Phys., 5:11, May 2015.

[6] P. Agrawal, M. Blanke, and K. Gemmler. Flavored dark matter be- yond Minimal Flavor Violation. Journal of High Energy Physics, 10:72, October 2014.

[7] P. Agrawal, Z. Chacko, and C. B. Verhaaren. Leptophilic dark matter and the anomalous magnetic moment of the muon. Journal of High Energy Physics, 8:147, August 2014. [8] R. Allahverdi, S. S. Campbell, B. Dutta, and Y. Gao. Dark matter indirect detection signals and the nature of neutrinos in the super- symmetric U(1)B−L extension of the standard model. Phys. Rev. D, 90(7):073002, October 2014.

[9] W. Altmannshofer, W. A. Bardeen, M. Bauer, M. Carena, and J. D. Lykken. Light dark matter, naturalness, and the radiative origin of the electroweak scale. Journal of High Energy Physics, 1:32, January 2015.

[10] W. Altmannshofer, P. J. Fox, R. Harnik, G. D. Kribs, and N. Raj. Dark matter signals in dilepton production at hadron colliders. Phys. Rev. D, 91(11):115006, June 2015.

[11] W. Altmannshofer, C. Frugiuele, and R. Harnik. Fermion hierarchy from sfermion anarchy. Journal of High Energy Physics, 12:180, De- cember 2014.

[12] D. S. M. Alves, J. Galloway, J. T. Ruderman, and J. R. Walsh. Run- ning electroweak couplings as a probe of new physics. Journal of High Energy Physics, 2:7, February 2015.

[13] L. B. Anderson and W. Taylor. Geometric constraints in dual F-theory and heterotic string compactifications. Journal of High Energy Physics, 8:25, August 2014.

[14] T. Andrade, C. Keeler, A. Peach, and S. F. Ross. Schr¨odinger hologra- phy for z < 2. Classical and Quantum Gravity, 32(3):035015, February 2015.

[15] Tomas Andrade, Cynthia Keeler, Alex Peach, and Simon F. Ross. Schrdinger holography with z=2. CLASSICAL AND QUANTUM GRAVITY, 32(8):085006, APR 23 2015.

[16] D. Anninos, T. Anous, F. Denef, and L. Peeters. Holographic vitrifi- cation. Journal of High Energy Physics, 4:27, April 2015.

[17] S. Aoki, M. Hanada, and A. Nakamura. Taming the pion condensation in QCD at finite baryon density: a numerical test in a random matrix model. Journal of High Energy Physics, 5:71, May 2015. [18] T. Appelquist, Y. Bai, and M. Piai. Constrained flavor breaking. Phys. Rev. D, 91(9):093009, May 2015.

[19] Seiji Armstrong, Meng Wang, Run Yan Teh, Qihuang Gong, Qiongyi He, Jiri Janousele, Hans-Albert Bachor, Margaret D. Reid, and Ping Koy Lam. Multipartite Einstein-Podolsky-Rosen steering and genuine tripartite entanglement with optical networks. NATURE PHYSICS, 11(2):167–172, FEB 2015.

[20] C. T. Asplund, A. Bernamonti, F. Galli, and T. Hartman. Holographic entanglement entropy from 2d CFT: heavy states and local quenches. Journal of High Energy Physics, 2:171, February 2015.

[21] Y. Bai and J. Berger. Coloron-assisted leptoquarks at the LHC. Physics Letters B, 746:32–36, June 2015.

[22] V. Balasubramanian, B. D. Chowdhury, B. Czech, and J. de Boer. Entwinement and the emergence of spacetime. Journal of High Energy Physics, 1:48, January 2015.

[23] J. Barnard, T. Gherghetta, T. S. Ray, and A. Spray. The unnatural composite Higgs. Journal of High Energy Physics, 1:67, January 2015.

[24] M. Baumgart, I. Z. Rothstein, and V. Vaidya. Constraints on galactic wino densities from gamma ray lines. Journal of High Energy Physics, 4:106, April 2015.

[25] C. Beem, M. Lemos, P. Liendo, W. Peelaers, L. Rastelli, and B. C. van Rees. Infinite Chiral Symmetry in Four Dimensions. Communications in Mathematical Physics, 336:1359–1433, June 2015.

[26] Christopher Beem, Tudor Dimofte, and Sara Pasquetti. Holomor- phic blocks in three dimensions. JOURNAL OF HIGH ENERGY PHYSICS, (12):1–120, DEC 30 2014.

[27] B. Bellazzini, L. Martucci, and R. Torre. Symmetries, sum rules and constraints on effective field theories. Journal of High Energy Physics, 9:100, September 2014.

[28] I. Bena, M. Gra˜na,S. Kuperstein, and S. Massai. Giant tachyons in the landscape. Journal of High Energy Physics, 2:146, February 2015. [29] Iosif Bena, Stefano Giusto, Rodolfo Russo, Masaki Shigemori, and Nicholas P. Warner. Habemus superstratum! A constructive proof of the existence of superstrata. JOURNAL OF HIGH ENERGY PHYSICS, (5):110, MAY 21 2015. [30] F. Benini, R. Eager, K. Hori, and Y. Tachikawa. Elliptic Genera of 2d = 2 Gauge Theories. Communications in Mathematical Physics, 333:1241–1286, February 2015. [31] D. Berenstein and E. Dzienkowski. Giant gravitons and the emergence of geometric limits in β-deformations of SYM. Journal of High Energy Physics, 1:126, January 2015. [32] F. U. Bernlochner, Z. Ligeti, and S. Turczyk. New ways to search for right-handed current in B ⇒ρ `ν decay. Phys. Rev. D, 90(9):094003, November 2014. [33] M. Bertolini, I. V. Melnikov, and M. R. Plesser. Accidents in (0,2) Landau-Ginzburg theories. Journal of High Energy Physics, 12:157, December 2014. [34] J. Bhattacharya, V. E. Hubeny, M. Rangamani, and T. Takayanagi. Entanglement density and gravitational thermodynamics. Phys. Rev. D, 91(10):106009, May 2015. [35] F. Bishara and J. Zupan. Continuous flavor symmetries and the stabil- ity of asymmetric dark matter. Journal of High Energy Physics, 1:89, January 2015. [36] M. M. Block, L. Durand, F. Halzen, L. Stodolsky, and T. J. Weiler. Evidence for an energy-invariant ”edge” in proton-proton scattering at very high energies. Phys. Rev. D, 91(1):011501, January 2015. [37] M. Boezio. Cosmic Ray Electrons and Protons, and Their Antiparticles. Brazilian Journal of Physics, 44:441–449, October 2014. [38] V. Braun and D. R. Morrison. F-theory on genus-one fibrations. Jour- nal of High Energy Physics, 8:132, August 2014. [39] J. Brod, J. Drobnak, A. L. Kagan, E. Stamou, and J. Zupan. Stealth QCD-like strong interactions and the t t asymmetry. Phys. Rev. D, 91(9):095009, May 2015. [40] J. Brod, A. Greljo, E. Stamou, and P. Uttayarat. Probing anomalous interactions with rare meson decays. Journal of High Energy Physics, 2:141, February 2015.

[41] R. C. Brower, M. Cheng, G. T. Fleming, M. F. Lin, E. T. Neil, J. C. Osborn, C. Rebbi, E. Rinaldi, D. Schaich, C. Schroeder, G. Voronov, P. Vranas, E. Weinberg, and O. Witzel. Maximum-likelihood approach to topological charge fluctuations in lattice gauge theory. Phys. Rev. D, 90(1):014503, July 2014.

[42] A. R. Brown. Decay of hot Kaluza-Klein space. Phys. Rev. D, 90(10):104017, November 2014.

[43] M. R. Buckley, T. Plehn, and M. J. Ramsey-Musolf. Top squark with mass close to the top quark. Phys. Rev. D, 90(1):014046, July 2014.

[44] G. Burdman, Z. Chacko, R. Harnik, L. de Lima, and C. B. Verhaaren. Colorless top partners, a 125 GeV Higgs boson, and the limits on nat- uralness. Phys. Rev. D, 91(5):055007, March 2015.

[45] M. Carena, H. E. Haber, I. Low, N. R. Shah, and C. E. M. Wag- ner. Complementarity between nonstandard Higgs boson searches and precision Higgs boson measurements in the MSSM. Phys. Rev. D, 91(3):035003, February 2015.

[46] S. Catterall, D. Schaich, P. H. Damgaard, T. DeGrand, and J. Giedt. N=4 supersymmetry on a space-time lattice. Phys. Rev. D, 90(6):065013, September 2014.

[47] O. Chacaltana, J. Distler, and A. Trimm. Tinkertoys for the twisted D-series. Journal of High Energy Physics, 4:173, April 2015.

[48] N. Chakrabarty, T. Han, Z. Liu, and B. Mukhopadhyaya. Radia- tive return for heavy Higgs boson at a muon collider. Phys. Rev. D, 91(1):015008, January 2015.

[49] S. Chang, J. Galloway, M. A. Luty, E. Salvioni, and Y. Tsai. Phe- nomenology of induced electroweak symmetry breaking. Journal of High Energy Physics, 3:17, March 2015. [50] F. Chen, B. Michel, J. Polchinski, and A. Puhm. Journey to the center of the fuzzball. Journal of High Energy Physics, 2:81, February 2015.

[51] L. Chen, J. Toner, and C. F. Lee. Critical phenomenon of the order−−disorder transition in incompressible active fluids. New Jour- nal of Physics, 17(4):042002, April 2015.

[52] M.-C. Chen, M. Ratz, and V. Takhistov. R parity violation from dis- crete R symmetries. Nuclear Physics B, 891:322–345, February 2015.

[53] A. Cheng, A. Hasenfratz, Y. Liu, G. Petropoulos, and D. Schaich. Fi- nite size scaling of conformal theories in the presence of a near-marginal operator. Phys. Rev. D, 90(1):014509, July 2014.

[54] C. Cheung, M. Papucci, D. Sanford, N. R. Shah, and K. M. Zurek. NMSSM interpretation of the Galactic Center excess. Phys. Rev. D, 90(7):075011, October 2014.

[55] C.-K. Chiu, D. I. Pikulin, and M. Franz. Strongly interacting Majorana fermions. Phys. Rev. B, 91(16):165402, April 2015.

[56] Krzysztof Cichy, Elena Garcia-Ramos, and Karl Jansen. Short distance singularities and automatic O(a) improvement: the cases of the chiral condensate and the topological susceptibility. JOURNAL OF HIGH ENERGY PHYSICS, (4):048, APR 10 2015.

[57] J. M. Cline, Z. Liu, G. D. Moore, and W. Xue. Composite strongly interacting dark matter. Phys. Rev. D, 90(1):015023, July 2014.

[58] B. Coleppa, F. Kling, and S. Su. Charged Higgs search via AW /HW channel. Journal of High Energy Physics, 12:148, December 2014.

[59] G. Comp`ere, M. Guica, and M. J. Rodriguez. Two Virasoro symme- tries in stringy warped AdS3. Journal of High Energy Physics, 12:12, December 2014.

[60] P. Cox and T. Gherghetta. A soft-wall dilaton. Journal of High Energy Physics, 2:6, February 2015.

[61] N. Craig, S. Knapen, and P. Longhi. Neutral Naturalness from Orbifold Higgs Models. Physical Review Letters, 114(6):061803, February 2015. [62] Nathaniel Craig, Marco Farina, Matthew McCullough, and Maxim Perelstein. Precision Higgsstrahlung as a probe of new physics. JOUR- NAL OF HIGH ENERGY PHYSICS, (3):146, MAR 26 2015.

[63] Nathaniel Craig, Simon Knapen, and Pietro Longhi. The Orbifold Higgs. JOURNAL OF HIGH ENERGY PHYSICS, (3):106, MAR 20 2015.

[64] D. Curtin, R. Essig, S. Gori, and J. Shelton. Illuminating dark photons with high-energy colliders. Journal of High Energy Physics, 2:157, February 2015.

[65] D. Curtin, P. Meade, and C.-T. Yu. Testing electroweak baryogenesis with future colliders. Journal of High Energy Physics, 11:127, Novem- ber 2014.

[66] D. Curtin, Z. Surujon, and Y. Tsai. Direct detection with dark medi- ators. Physics Letters B, 738:477–482, November 2014.

[67] D. Curtin and Y. Tsai. The double-dark portal. Journal of High Energy Physics, 11:136, November 2014.

[68] David Curtin, Rouven Essig, Stefania Gori, Prerit Jaiswal, Andrey Katz, Tao Liu, Zhen Liu, David McKeen, Jessie Shelton, Matthew Strassler, Ze’ev Surujon, Brock Tweedie, and Yi-Ming Zhong. Ex- otic decays of the 125 GeV Higgs boson. PHYSICAL REVIEW D, 90(7):075004, OCT 13 2014.

[69] M. Cvetiˇcand F. Larsen. Black holes with intrinsic spin. Journal of High Energy Physics, 11:33, November 2014.

[70] M. Czakon, A. Mitov, M. Papucci, J. T. Ruderman, and A. Weiler. Re- moving Gaps in the Exclusion of Top Squark Parameter Space. Physical Review Letters, 113(20):201803, November 2014.

[71] B. Czech and L. Lamprou. Holographic definition of points and dis- tances. Phys. Rev. D, 90(10):106005, November 2014.

[72] D. Das, G. Hiller, M. Jung, and A. Shires. The and distributions at low hadronic recoil. Journal of High Energy Physics, 9:109, September 2014. [73] F. D’Eramo, L. J. Hall, and D. Pappadopulo. Multiverse dark matter: SUSY or axions. Journal of High Energy Physics, 11:108, November 2014.

[74] Eric D’Hoker and Michael B. Green. Zhang-Kawazumi invariants and superstring amplitudes. JOURNAL OF NUMBER THEORY, 144:111– 150, NOV 2014.

[75] K. R. Dienes, S. Su, and B. Thomas. Strategies for probing nonminimal dark sectors at colliders: The interplay between cuts and kinematic distributions. Phys. Rev. D, 91(5):054002, March 2015.

1,1 [76] A. Donos and J. P. Gauntlett. Flowing from AdS5 to AdS3 with T . Journal of High Energy Physics, 8:6, August 2014.

[77] B. Dumont, J. F. Gunion, Y. Jiang, and S. Kraml. Constraints on and future prospects for two-Higgs-doublet models in light of the LHC Higgs signal. Phys. Rev. D, 90(3):035021, August 2014.

[78] M. B. Einhorn and D. R. T. Jones. Gauss-Bonnet coupling constant in classically scale-invariant gravity. Phys. Rev. D, 91(8):084039, April 2015.

[79] M. B. Einhorn and D. R. T. Jones. Naturalness and dimensional trans- mutation in classically scale-invariant gravity. Journal of High Energy Physics, 3:47, March 2015.

[80] C. Englert and M. Spannowsky. Effective theories and measurements at colliders. Physics Letters B, 740:8–15, January 2015.

[81] Christoph Englert, Yotam Soreq, and Michael Spannowsky. Off-shell Higgs coupling measurements in BSM scenarios. JOURNAL OF HIGH ENERGY PHYSICS, (5):145, MAY 27 2015.

[82] Y. V. Fominov, Y. Tanaka, Y. Asano, and M. Eschrig. Odd-frequency superconducting states with different types of Meissner response: Prob- lem of coexistence. Phys. Rev. B, 91(14):144514, April 2015.

[83] R. S. Garavuso and E. Sharpe. Analogues of Mathai-Quillen forms in sheaf cohomology and applications to topological field theory. Journal of Geometry and Physics, 92:1–29, June 2015. [84] M. Garcia-Pepin, S. Gori, M. Quiros, R. Vega, R. Vega-Morales, and T.-T. Yu. Supersymmetric custodial Higgs triplets and the breaking of universality. Phys. Rev. D, 91(1):015016, January 2015.

[85] J. Garriga, K. Skenderis, and Y. Urakawa. Multi-field inflation from holography. J. Cosmology & Astroparticle Phys., 1:28, January 2015.

[86] S. A. Gentle and M. Gutperle. Entanglement entropy of Wilson loops: Holography and matrix models. Phys. Rev. D, 90(6):066011, September 2014.

[87] S. Gori, S. Jung, L.-T. Wang, and J. D. Wells. Prospects for elec- troweakino discovery at a 100 TeV hadron collider. Journal of High Energy Physics, 12:108, December 2014.

[88] A. Grassi, J. Halverson, J. Shaneson, and W. Taylor. Non-Higgsable QCD and the standard model spectrum in F-theory. Journal of High Energy Physics, 1:86, January 2015.

[89] Michael B. Green, Stephen D. Miller, and Pierre Vanhove. Small rep- resentations, string instantons, and Fourier modes of Eisenstein series. JOURNAL OF NUMBER THEORY, 146:187–309, JAN 2015.

[90] A. Greljo, J. F. Kamenik, and J. Kopp. Disentangling flavor violation in the top-Higgs sector at the LHC. Journal of High Energy Physics, 7:46, July 2014.

[91] M. Guica and S. F. Ross. Behind the geon horizon. Classical and Quantum Gravity, 32(5):055014, March 2015.

[92] F. M. Haehl, T. Hartman, D. Marolf, H. Maxfield, and M. Rangamani. Topological aspects of generalized gravitational entropy. Journal of High Energy Physics, 5:23, May 2015.

[93] F. M. Haehl, R. Loganayagam, and M. Rangamani. Adiabatic hydro- dynamics: the eightfold way to dissipation. Journal of High Energy Physics, 5:60, May 2015.

[94] F. M. Haehl, R. Loganayagam, and M. Rangamani. Eightfold Clas- sification of Hydrodynamic Dissipation. Physical Review Letters, 114(20):201601, May 2015. [95] L. J. Hall, D. Pinner, and J. T. Ruderman. The weak scale from BBN. Journal of High Energy Physics, 12:134, December 2014.

[96] J. Halverson, H. Jockers, J. M. Lapan, and D. R. Morrison. Perturba- tive Corrections to K¨ahler Moduli Spaces. Communications in Mathe- matical Physics, 333:1563–1584, February 2015.

[97] J. Halverson and D. R. Morrison. The landscape of M-theory com- pactifications on seven-manifolds with G 2 holonomy. Journal of High Energy Physics, 4:47, April 2015.

[98] A. Hamze, C. Kilic, J. Koeller, C. Trendafilova, and J.-H. Yu. Lepton- flavored asymmetric dark matter and interference in direct detection. Phys. Rev. D, 91(3):035009, February 2015.

[99] M. Hanada and H. Shimada. On the continuity of the commutative limit of the 4d N = 4 non-commutative super Yang-Mills theory. Nu- clear Physics B, 892:449–474, March 2015.

[100] K. Harigaya and M. Ibe. Anomaly mediated gaugino mass and path- integral measure. Phys. Rev. D, 90(8):085028, October 2014.

[101] H. B. Hartanto, B. J¨ager, L. Reina, and D. Wackeroth. Higgs bo- son production in association with top quarks in the POWHEG BOX. Phys. Rev. D, 91(9):094003, May 2015.

[102] G. S. Hartnett, G. T. Horowitz, and K. Maeda. A no black hole theo- rem. Classical and Quantum Gravity, 32(5):055011, March 2015.

[103] A. Hashimoto, P. Ouyang, and M. Yamazaki. Boundaries and defects of SYM with 4 supercharges. Part II: Brane constructions and 3 d field theories. Journal of High Energy Physics, 10:108, October 2014.

[104] Q. Y. He, Q. H. Gong, and M. D. Reid. Classifying Directional Gaus- sian Entanglement, Einstein-Podolsky-Rosen Steering, and Discord. Physical Review Letters, 114(6):060402, February 2015.

[105] M. Headrick, V. E. Hubeny, A. Lawrence, and M. Rangamani. Causal- ity & holographic entanglement entropy. Journal of High Energy Physics, 12:162, December 2014. [106] C. Hickey, P. Rath, and A. Paramekanti. Competing chiral orders in the topological Haldane-Hubbard model of spin-1/2 fermions and bosons. Phys. Rev. B, 91(13):134414, April 2015.

[107] G. Hiller and M. Schmaltz. RK and future b⇒s``physicsbeyondthestandardmodelopportunities.P hys.Rev.D, 90(5) : 054014, September2014.

[108] I. Hoenig, G. Samach, and D. Tucker-Smith. Searching for dilepton resonances below the Z mass at the LHC. Phys. Rev. D, 90(7):075016, October 2014.

[109] A. Hryczuk, I. Cholis, R. Iengo, M. Tavakoli, and P. Ullio. Indirect detection analysis: wino dark matter case study. J. Cosmology & As- troparticle Phys., 7:31, July 2014.

[110] J. Huang, T. Liu, L.-T. Wang, and F. Yu. Supersymmetric subelec- troweak scale dark matter, the Galactic Center gamma-ray excess, and exotic decays of the 125 GeV Higgs boson. Phys. Rev. D, 90(11):115006, December 2014.

[111] P. Huang and C. E. M. Wagner. CMS kinematic edge from sbottoms. Phys. Rev. D, 91(1):015014, January 2015.

[112] R. H¨ubener, Y. Sekino, and J. Eisert. Equilibration in low-dimensional quantum matrix models. Journal of High Energy Physics, 4:166, April 2015.

[113] V. E. Hubeny. Covariant residual entropy. Journal of High Energy Physics, 9:156, September 2014.

[114] V. E. Hubeny. The AdS/CFT correspondence. Classical and Quantum Gravity, 32(12):124010, June 2015.

[115] A. Ibarra, A. Pierce, N. R. Shah, and S. Vogl. Anatomy of coanni- hilation with a scalar top partner. Phys. Rev. D, 91(9):095018, May 2015.

[116] S. Ipek, D. McKeen, and A. E. Nelson. CP violation in pseudo-Dirac fermion oscillations. Phys. Rev. D, 90(7):076005, October 2014. [117] P. Jaiswal and T. Okui. Explanation of the W W excess at the LHC by jet-veto resummation. Phys. Rev. D, 90(7):073009, October 2014.

[118] Y. S. Jeong, C. S. Kim, M. V. Luu, and M. H. Reno. Color dipole cross section and inelastic structure function. Journal of High Energy Physics, 11:25, November 2014.

[119] C. V. Johnson. Holographic heat engines. Classical and Quantum Gravity, 31(20):205002, October 2014.

[120] C. V. Johnson. Thermodynamic volumes for AdS-Taub-NUT and AdS- Taub-Bolt. Classical and Quantum Gravity, 31(23):235003, December 2014.

[121] Y. Kahn, G. Krnjaic, J. Thaler, and M. Toups. DAE δ ALUS and dark matter detection. Phys. Rev. D, 91(5):055006, March 2015.

[122] N. Kaloper and A. Lawrence. Natural chaotic inflation and ultraviolet sensitivity. Phys. Rev. D, 90(2):023506, July 2014.

[123] M. Kamionkowski, J. Pradler, and D. G. E. Walker. Dark Energy from the String Axiverse. Physical Review Letters, 113(25):251302, December 2014.

[124] J. Kile, M. J. P´erez,P. Ramond, and J. Zhang. θ13 and the flavor ring. Phys. Rev. D, 90(1):013004, July 2014.

[125] S. Kudla, D. M. Gautreau, and D. E. Sheehy. Pairing correlations in a trapped one-dimensional Fermi gas. Phys. Rev. A, 91(4):043612, April 2015.

[126] M. Kulaxizi and R. Rahman. Higher-spin modes in a domain-wall universe. Journal of High Energy Physics, 10:193, October 2014.

[127] A. Kusenko, L. Pearce, and L. Yang. Postinflationary Higgs Relaxation and the Origin of Matter-Antimatter Asymmetry. Physical Review Letters, 114(6):061302, February 2015.

[128] J. Lee, A. Lewkowycz, E. Perlmutter, and B. R. Safdi. R´enyi entropy, stationarity, and entanglement of the conformal scalar. Journal of High Energy Physics, 3:75, March 2015. [129] S. Leichenauer. Disrupting entanglement of black holes. Phys. Rev. D, 90(4):046009, August 2014.

[130] A. Lewkowycz and E. Perlmutter. Universality in the geometric depen- dence of R´enyi entropy. Journal of High Energy Physics, 1:80, January 2015.

[131] B. Li and C. E. M. Wagner. C P -odd component of the lightest neutral Higgs boson in the MSSM. Phys. Rev. D, 91(9):095019, May 2015.

[132] Jennifer Lin, Matilde Marcolli, Hirosi Ooguri, and Bogdan Stoica. Lo- cality of Gravitational Systems from Entanglement of Conformal Field Theories. PHYSICAL REVIEW LETTERS, 114(22):221601, JUN 2 2015.

[133] A. E. Lipstein and R. A. Reid-Edwards. Lattice gerbe theory. Journal of High Energy Physics, 9:34, September 2014.

[134] D. F. Litim and F. Sannino. Asymptotic safety guaranteed. Journal of High Energy Physics, 12:178, December 2014.

[135] H. Liu, H. Ooguri, and B. Stoica. Hall viscosity and angular momentum in gapless holographic models. Phys. Rev. D, 90(8):086007, October 2014.

[136] M. P. Lombardo, K. Miura, T. J. Nunes da Silva, and E. Pallante. On the particle spectrum and the conformal window. Journal of High Energy Physics, 12:183, December 2014.

[137] K. Maeda, M. L. Wall, and L. D. Carr. Hyperfine structure of the hydroxyl free radical (OH) in electric and magnetic fields. New Journal of Physics, 17(4):045014, April 2015.

[138] Carlos R. Mafra and Oliver Schlotterer. Towards one-loop SYM am- plitudes from the pure spinor BRST cohomology. FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS, 63(2):105–131, FEB 2015.

[139] S. P. Martin and D. G. Robertson. Higgs boson mass in the standard model at two-loop order and beyond. Phys. Rev. D, 90(7):073010, October 2014. [140] S. Massai, G. Pasini, and A. Puhm. Metastability in bubbling AdS space. Journal of High Energy Physics, 2:138, February 2015.

[141] P. Mellado, O. Petrova, and O. Tchernyshyov. Projective symmetry of partons in the Kitaev honeycomb model. Phys. Rev. B, 91(4):041103, January 2015.

[142] G. W. Moore, A. B. Royston, and D. Van den Bleeken. Brane bending and monopole moduli. Journal of High Energy Physics, 10:157, October 2014.

[143] G. W. Moore, A. B. Royston, and D. Van den Bleeken. Parame- ter counting for singular monopoles on R3. Journal of High Energy Physics, 10:142, October 2014.

[144] M. P. M¨uller,J. Oppenheim, and O. C. O. Dahlsten. Hiding Informa- tion in Theories Beyond Quantum Mechanics, and It’s Application to the Black Hole Information Problem. Foundations of Physics, 44:829– 842, August 2014.

[145] Y. Nomura, F. Sanches, and S. J. Weinberg. Black Hole Interior in Quantum Gravity. Physical Review Letters, 114(20):201301, May 2015.

[146] Y. Nomura, F. Sanches, and S. J. Weinberg. Relativeness in quantum gravity: limitations and frame dependence of semiclassical descriptions. Journal of High Energy Physics, 4:158, April 2015.

[147] C. Papageorgakis and A. B. Royston. Revisiting soliton contributions to perturbative amplitudes. Journal of High Energy Physics, 9:128, September 2014.

[148] M. Papucci, A. Vichi, and K. M. Zurek. Monojet versus the rest of the world I: t-channel models. Journal of High Energy Physics, 11:24, November 2014.

[149] M. Piraud, F. Heidrich-Meisner, I. P. McCulloch, S. Greschner, T. Vekua, and U. Schollw¨ock. Vortex and Meissner phases of strongly interacting bosons on a two-leg ladder. Phys. Rev. B, 91(14):140406, April 2015. [150] L. C. Price, H. V. Peiris, J. Frazer, and R. Easther. Gravitational Wave Consistency Relations for Multifield Inflation. Physical Review Letters, 114(3):031301, January 2015.

[151] M. Pustilnik and K. A. Matveev. Solitons in a one-dimensional Wigner crystal. Phys. Rev. B, 91(16):165416, April 2015.

[152] M. Rangamani and M. Rota. Quantum channels in quantum gravity. International Journal of Modern Physics D, 23:42009, October 2014.

[153] M. Rangamani, M. Rozali, and A. Wong. Driven holographic CFTs. Journal of High Energy Physics, 4:93, April 2015.

[154] D. A. Roberts, D. Stanford, and L. Susskind. Localized shocks. Journal of High Energy Physics, 3:51, March 2015.

[155] V. Rosenhaus and M. Smolkin. Entanglement entropy, planar surfaces, and spectral functions. Journal of High Energy Physics, 9:119, Septem- ber 2014.

[156] B. R. Safdi and B. Suerfu. Directional Antineutrino Detection. Physical Review Letters, 114(7):071802, February 2015.

[157] S. S. Schweber. Hacking the quantum revolution: 1925-1975. European Physical Journal H, February 2015.

[158] Stephen H. Shenker and Douglas Stanford. Stringy effects in scram- bling. JOURNAL OF HIGH ENERGY PHYSICS, (5):132, MAY 26 2015.

[159] M. Shifman, A. Vainshtein, and A. Yung. Making supersymmetric con- nected N =(0 ,2 ) sigma models. Phys. Rev. D, 91(4):045010, February 2015.

[160] P. Sikivie. Axion Dark Matter Detection Using Atomic Transitions. Physical Review Letters, 113(20):201301, November 2014.

[161] D. E. Soper, M. Spannowsky, C. J. Wallace, and T. M. P. Tait. Scatter- ing of dark particles with light mediators. Phys. Rev. D, 90(11):115005, December 2014. Astrophysics

[1] P. Amaro-Seoane, P. Glaschke, and R. Spurzem. Hybrid methods in planetesimal dynamics: formation of protoplanetary systems and the mill condition. MNRAS, 445:3755–3769, December 2014.

[2] N. C. Amorisco. On feathers, bifurcations and shells: the dynamics of tidal streams across the mass scale. MNRAS, 450:575–591, June 2015.

[3] J. J. Andrews, W. M. Farr, V. Kalogera, and B. Willems. Evolutionary Channels for the Formation of Double Neutron Stars. ApJ, 801:32, March 2015.

[4] D. Angl´es-Alc´azar, F. Ozel,¨ R. Dav´e,N. Katz, J. A. Kollmeier, and B. D. Oppenheimer. Torque-limited Growth of Massive Black Holes in Galaxies across Cosmic Time. ApJ, 800:127, February 2015.

[5] Y. Bai, A. J. Barger, V. Barger, R. Lu, A. D. Peterson, and J. Salvado. Neutrino lighthouse at Sagittarius A*. Phys. Rev. D, 90(6):063012, September 2014.

[6] J. Bally, J. M. Rathborne, S. N. Longmore, J. M. Jackson, J. F. Alves, E. Bressert, Y. Contreras, J. B. Foster, G. Garay, A. Ginsburg, K. G. Johnston, J. M. D. Kruijssen, L. Testi, and A. J. Walsh. Absorp- tion Filaments toward the Massive Clump G0.253+0.016. ApJ, 795:28, November 2014.

[7] Christopher Barber, Else Starkenburg, Julio F. Navarro, and Alan W. McConnachie. Galactic tides and the shape and orientation of dwarf galaxy satellites. MONTHLY NOTICES OF THE ROYAL ASTRO- NOMICAL SOCIETY, 447(2):1112–1125, FEB 21 2015. [8] R. L. Beaton, D. Mart´ınez-Delgado, S. R. Majewski, E. D’Onghia, S. Zibetti, R. J. Gabany, K. E. Johnson, M. Blanton, and A. Verbiscer. Cannibalization and Rebirth in the NGC 5387 System. I. The Stellar Stream and Star-forming Region. ApJ, 790:117, August 2014.

[9] P. S. Behroozi, G. Zhu, H. C. Ferguson, A. P. Hearin, J. Lotz, J. Silk, S. Kassin, Y. Lu, D. Croton, R. S. Somerville, and D. F. Watson. Using galaxy pairs to probe star formation during major halo mergers. MNRAS, 450:1546–1564, June 2015.

[10] A. R. Bell. Cosmic ray origins in supernova blast waves. MNRAS, 447:2224–2234, March 2015.

[11] A. J. Benson. Building a predictive model of galaxy formation - I. Phenomenological model constrained to the z = 0 stellar mass function. MNRAS, 444:2599–2636, November 2014.

[12] G. Blackadder and S. M. Koushiappas. Dark matter with two- and many-body decays and supernovae type Ia. Phys. Rev. D, 90(10):103527, November 2014.

[13] J. J. Bochanski, B. Willman, N. Caldwell, R. Sanderson, A. A. West, J. Strader, and W. Brown. The Most Distant Stars in the Milky Way. ApJ, 790:L5, July 2014.

[14] B. Bozek, D. J. E. Marsh, J. Silk, and R. F. G. Wyse. Galaxy UV- luminosity function and reionization constraints on axion dark matter. MNRAS, 450:209–222, June 2015.

[15] M. R. Buckley, J. Zavala, F.-Y. Cyr-Racine, K. Sigurdson, and M. Vo- gelsberger. Scattering, damping, and acoustic oscillations: Simulating the structure of dark matter halos with relativistic force carriers. Phys. Rev. D, 90(4):043524, August 2014.

[16] I. Cabrera-Ziri, N. Bastian, B. Davies, G. Magris, G. Bruzual, and F. Schweizer. Constraining globular cluster formation through studies of young massive clusters - II. A single stellar population young massive cluster in NGC 34. MNRAS, 441:2754–2759, July 2014.

[17] J. A. Calanog, H. Fu, A. Cooray, J. Wardlow, B. Ma, S. Amber, A. J. Baker, M. Baes, J. Bock, N. Bourne, R. S. Bussmann, C. M. Casey, S. C. Chapman, D. L. Clements, A. Conley, H. Dannerbauer, G. De Zotti, L. Dunne, S. Dye, S. Eales, D. Farrah, C. Furlanetto, A. I. Harris, R. J. Ivison, S. Kim, S. J. Maddox, G. Magdis, H. Messias, M. J. Micha lowski, M. Negrello, J. Nightingale, J. M. O’Bryan, S. J. Oliver, D. Riechers, D. Scott, S. Serjeant, J. Simpson, M. Smith, N. Timmons, C. Thacker, E. Valiante, and J. D. Vieira. Lens Models of Herschel- selected Galaxies from High-resolution Near-IR Observations. ApJ, 797:138, December 2014.

[18] T. Cantat-Gaudin, A. Vallenari, S. Zaggia, A. Bragaglia, R. Sordo, J. E. Drew, J. Eisloeffel, H. J. Farnhill, E. Gonzalez-Solares, R. Greimel, M. J. Irwin, A. Kupcu-Yoldas, C. Jordi, R. Blomme, L. Sampedro, M. T. Costado, E. Alfaro, R. Smiljanic, L. Magrini, P. Donati, E. D. Friel, H. Jacobson, U. Abbas, D. Hatzidimitriou, A. Spagna, A. Vec- chiato, L. Balaguer-Nunez, C. Lardo, M. Tosi, E. Pancino, A. Klutsch, G. Tautvaisiene, A. Drazdauskas, E. Puzeras, F. Jim´enez-Esteban, E. Maiorca, D. Geisler, I. San Roman, S. Villanova, G. Gilmore, S. Randich, T. Bensby, E. Flaccomio, A. Lanzafame, A. Recio-Blanco, F. Damiani, A. Hourihane, P. Jofr´e, P. de Laverny, T. Masseron, L. Morbidelli, L. Prisinzano, G. G. Sacco, L. Sbordone, and C. C. Worley. The Gaia-ESO Survey: Stellar content and elemental abun- dances in the massive cluster NGC 6705. A&A, 569:A17, September 2014.

[19] D. Caprioli and A. Spitkovsky. Simulations of Ion Acceleration at Non-relativistic Shocks. II. Magnetic Field Amplification. ApJ, 794:46, October 2014.

[20] D. Caprioli and A. Spitkovsky. Simulations of Ion Acceleration at Non- relativistic Shocks. III. Particle Diffusion. ApJ, 794:47, October 2014.

[21] C. M. Casey, D. Narayanan, and A. Cooray. Dusty star-forming galax- ies at high redshift. Phys. Rep., 541:45–161, August 2014.

[22] N. Chamel, A. F. Fantina, J. L. Zdunik, and P. Haensel. Neutron drip transition in accreting and nonaccreting neutron star crusts. Phys. Rev. C, 91(5):055803, May 2015.

[23] S. C. Chapman, F. Bertoldi, I. Smail, A. W. Blain, J. E. Geach, M. Gur- well, R. J. Ivison, G. R. Petitpas, N. Reddy, and C. C. Steidel. A blind CO detection of a distant red galaxy in the HS1700+64 protocluster. MNRAS, 449:L68–L72, April 2015.

[24] S. Ciarlariello, R. Crittenden, and F. Pace. Intrinsic size correlations in weak lensing. MNRAS, 449:2059–2068, May 2015.

[25] D. Clausen, S. Sigurdsson, and D. F. Chernoff. Dynamically formed black hole+millisecond pulsar binaries in globular clusters. MNRAS, 442:207–219, July 2014.

[26] J. D. Cohn and F. v. d. Voort. Characterizing simulated galaxy stellar mass histories. MNRAS, 446:3253–3267, February 2015.

[27] A. L. Coil, J. Aird, N. Reddy, A. E. Shapley, M. Kriek, B. Siana, B. Mobasher, W. R. Freeman, S. H. Price, and I. Shivaei. The MOS- DEF Survey: Optical Active Galactic Nucleus Diagnostics at z ˜ 2.3. ApJ, 801:35, March 2015.

[28] A. A. Cole, D. R. Weisz, A. E. Dolphin, E. D. Skillman, A. W. Mc- Connachie, A. M. Brooks, and R. Leaman. Delayed Star Formation in Isolated Dwarf galaxies: Hubble Space Telescope Star Formation History of the Aquarius Dwarf Irregular. ApJ, 795:54, November 2014.

[29] C. E. Cunha, D. Huterer, H. Lin, M. T. Busha, and R. H. Wechsler. Spectroscopic failures in photometric redshift calibration: cosmological biases and survey requirements. MNRAS, 444:129–146, October 2014.

[30] E. da Cunha, F. Walter, I. R. Smail, A. M. Swinbank, J. M. Simpson, R. Decarli, J. A. Hodge, A. Weiss, P. P. van der Werf, F. Bertoldi, S. C. Chapman, P. Cox, A. L. R. Danielson, H. Dannerbauer, T. R. Greve, R. J. Ivison, A. Karim, and A. Thomson. An ALMA Survey of Sub-millimeter Galaxies in the Extended Chandra Deep Field South: Physical Properties Derived from Ultraviolet-to-radio Modeling. ApJ, 806:110, June 2015.

[31] G. D’Ago, M. Paolillo, G. Fabbiano, T. H. Puzia, T. J. Maccarone, A. Kundu, P. Goudfrooij, and S. E. Zepf. Luminosity function of low- mass X-ray binaries in the globular cluster system of NGC 1399. A&A, 567:A2, July 2014. [32] A.-C. Davis, R. Gregory, R. Jha, and J. Muir. Astrophysical black holes in screened modified gravity. J. Cosmology & Astroparticle Phys., 8:33, August 2014.

[33] A. Deason, A. Wetzel, and S. Garrison-Kimmel. Satellite Dwarf Galax- ies in a Hierarchical Universe: The Prevalence of Dwarf-Dwarf Major Mergers. ApJ, 794:115, October 2014.

[34] A. J. Deason, V. Belokurov, K. M. Hamren, S. E. Koposov, K. M. Gilbert, R. L. Beaton, C. E. Dorman, P. Guhathakurta, S. R. Ma- jewski, and E. C. Cunningham. TriAnd and its siblings: satellites of satellites in the Milky Way halo. MNRAS, 444:3975–3985, November 2014.

[35] A. J. Deason, V. Belokurov, and D. R. Weisz. The progenitors of the Milky Way stellar halo: big bricks favoured over little bricks. MNRAS, 448:L77–L81, March 2015.

[36] V. P. Debattista. The vertical structure and kinematics of grand design spirals. MNRAS, 443:L1–L5, September 2014.

[37] P. B. Denton and T. J. Weiler. The Fortuitous Latitude of the Pierre Auger Observatory and Telescope Array for Reconstructing the Quadrupole Moment. ApJ, 802:25, March 2015.

[38] L. Dessart, E. Audit, and D. J. Hillier. Numerical simulations of su- perluminous supernovae of type IIn. MNRAS, 449:4304–4325, June 2015.

[39] L. Dessart and D. J. Hillier. One-dimensional non-LTE time-dependent radiative transfer of an He-detonation model and the connection to faint and fast-decaying supernovae. MNRAS, 447:1370–1382, February 2015.

[40] L. Dessart, D. J. Hillier, S. Blondin, and A. Khokhlov. Critical in- gredients of Type Ia supernova radiative-transfer modelling. MNRAS, 441:3249–3270, July 2014.

[41] B. Farr, V. Kalogera, and E. Luijten. A more efficient approach to parallel-tempered Markov-chain MonteAˆ Carlo for the highly structured posteriors of gravitational-wave signals. Phys. Rev. D, 90(2):024014, July 2014.

[42] R. Feldmann and L. Mayer. The Argo simulation - I. Quenching of massive galaxies at high redshift as a result of cosmological starvation. MNRAS, 446:1939–1956, January 2015.

[43] R. Fern´andez, D. Kasen, B. D. Metzger, and E. Quataert. Outflows from accretion discs formed in neutron star mergers: effect of black hole spin. MNRAS, 446:750–758, January 2015.

[44] R. J. Foley, O. D. Fox, C. McCully, M. M. Phillips, D. J. Sand, W. Zheng, P. Challis, A. V. Filippenko, G. Folatelli, W. Hillebrandt, E. Y. Hsiao, S. W. Jha, R. P. Kirshner, M. Kromer, G. H. Marion, M. Nelson, R. Pakmor, G. Pignata, F. K. R¨opke, I. R. Seitenzahl, J. M. Silverman, M. Skrutskie, and M. D. Stritzinger. Extensive HST ultraviolet spectra and multiwavelength observations of SN 2014J in M82 indicate reddening and circumstellar scattering by typical dust. MNRAS, 443:2887–2906, October 2014.

[45] O. D. Fox, J. M. Silverman, A. V. Filippenko, J. Mauerhan, J. Becker, H. J. Borish, S. B. Cenko, K. I. Clubb, M. Graham, E. Hsiao, P. L. Kelly, W. H. Lee, G. H. Marion, D. Milisavljevic, J. Parrent, I. Shiv- vers, M. Skrutskie, N. Smith, J. Wilson, and W. Zheng. On the nature of Type IIn/Ia-CSM supernovae: optical and near-infrared spectra of SN 2012ca and SN 2013dn. MNRAS, 447:772–785, February 2015.

[46] M. Freytsis, D. J. Robinson, and Y. Tsai. Galactic center gamma-ray excess through a dark shower. Phys. Rev. D, 91(3):035028, February 2015.

[47] S. Genel, S. M. Fall, L. Hernquist, M. Vogelsberger, G. F. Snyder, V. Rodriguez-Gomez, D. Sijacki, and V. Springel. Galactic Angular Momentum in the Illustris Simulation: Feedback and the Hubble Se- quence. ApJ, 804:L40, May 2015.

[48] A. Geringer-Sameth, S. M. Koushiappas, and M. Walker. Dwarf Galaxy Annihilation and Decay Emission Profiles for Dark Matter Experi- ments. ApJ, 801:74, March 2015. [49] A. Geringer-Sameth, S. M. Koushiappas, and M. G. Walker. Compre- hensive search for dark matter annihilation in dwarf galaxies. Phys. Rev. D, 91(8):083535, April 2015.

[50] G. Giacinti and A. R. Bell. Collisionless shocks and TeV neutrinos be- fore Supernova shock breakout from an optically thick wind. MNRAS, 449:3693–3699, June 2015.

[51] P. Glaschke, P. Amaro-Seoane, and R. Spurzem. Hybrid methods in planetesimal dynamics: description of a new composite algorithm. MN- RAS, 445:3620–3649, December 2014.

[52] J. Guillochon and A. Loeb. The Fastest Unbound Stars in the Universe. ApJ, 806:124, June 2015.

[53] P. R. Hague and M. I. Wilkinson. The Degeneracy of M33 Mass Mod- eling and Its Physical Implications. ApJ, 800:15, February 2015.

[54] N. Hand, A. Leauthaud, S. Das, B. D. Sherwin, G. E. Addison, J. R. Bond, E. Calabrese, A. Charbonnier, M. J. Devlin, J. Dunkley, T. Er- ben, A. Hajian, M. Halpern, J. Harnois-D´eraps,C. Heymans, H. Hilde- brandt, A. D. Hincks, J.-P. Kneib, A. Kosowsky, M. Makler, L. Miller, K. Moodley, B. Moraes, M. D. Niemack, L. A. Page, B. Partridge, N. Sehgal, H. Shan, J. L. Sievers, D. N. Spergel, S. T. Staggs, E. R. Switzer, J. E. Taylor, L. Van Waerbeke, C. Welker, and E. J. Wollack. First measurement of the cross-correlation of CMB lensing and galaxy lensing. Phys. Rev. D, 91(6):062001, March 2015.

[55] J. R. Hargis, B. Willman, and A. H. G. Peter. Too Many, Too Few, or Just Right? The Predicted Number and Distribution of Milky Way Dwarf Galaxies. ApJ, 795:L13, November 2014.

[56] W. E. Harris, W. Morningstar, O. Y. Gnedin, H. O’Halloran, J. P. Blakeslee, B. C. Whitmore, P. Cˆot´e,D. Geisler, E. W. Peng, J. Bailin, B. Rothberg, R. Cockcroft, and R. Barber DeGraaff. Globular Cluster Systems in Brightest Cluster Galaxies: A Near-universal Luminosity Function? ApJ, 797:128, December 2014.

[57] D. Harvey, T. D. Kitching, J. Noah-Vanhoucke, B. Hamner, T. Sal- imans, and A. M. Pires. Observing Dark Worlds: A crowdsourcing experiment for dark matter mapping. Astronomy and Computing, 5:35– 44, July 2014.

[58] C. C. Hayward, L. Lanz, M. L. N. Ashby, G. Fazio, L. Hernquist, J. R. Mart´ınez-Galarza, K. Noeske, H. A. Smith, S. Wuyts, and A. Zezas. The total infrared luminosity may significantly overestimate the star formation rate of quenching and recently quenched galaxies. MNRAS, 445:1598–1604, December 2014.

[59] C. C. Hayward and D. J. B. Smith. Should we believe the results of ultraviolet-millimetre galaxy spectral energy distribution modelling? MNRAS, 446:1512–1535, January 2015.

[60] C. C. Hayward, P. Torrey, V. Springel, L. Hernquist, and M. Vo- gelsberger. Galaxy mergers on a moving mesh: a comparison with smoothed particle hydrodynamics. MNRAS, 442:1992–2016, August 2014.

[61] C. He, K. Bechtol, A. P. Hearin, and D. Hooper. Prospects for detecting gamma rays from annihilating dark matter in dwarf galaxies in the era of the Dark Energy Survey and Large Synoptic Survey Telescope. Phys. Rev. D, 91(6):063515, March 2015.

[62] A. P. Hearin, D. F. Watson, M. R. Becker, R. Reyes, A. A. Berlind, and A. R. Zentner. The dark side of galaxy colour: evidence from new SDSS measurements of galaxy clustering and lensing. MNRAS, 444:729–743, October 2014.

[63] J. Hou, Q. Yu, and Y. Lu. Probing Baryonic Processes and Gastro- physics in the Formation of the Milky Way Dwarf Satellites. I. Metal- licity Distribution Properties. ApJ, 791:8, August 2014.

[64] E. A. Huerta, P. Kumar, S. T. McWilliams, R. O’Shaughnessy, and N. Yunes. Accurate and efficient waveforms for compact binaries on eccentric orbits. Phys. Rev. D, 90(8):084016, October 2014.

[65] N. Ivanova, S. Justham, and P. Podsiadlowski. On the role of recombi- nation in common-envelope ejections. MNRAS, 447:2181–2197, March 2015. [66] S. Justham, P. Podsiadlowski, and J. S. Vink. Luminous Blue Variables and Superluminous Supernovae from Binary Mergers. ApJ, 796:121, December 2014.

[67] M. Kamionkowski and E. D. Kovetz. Statistical Diagnostics to Iden- tify Galactic Foregrounds in B -Mode Maps. Physical Review Letters, 113(19):191303, November 2014.

[68] M. Kaplinghat, T. Linden, and H.-B. Yu. Galactic Center Excess in γ Rays from Annihilation of Self-Interacting Dark Matter. Physical Review Letters, 114(21):211303, May 2015.

[69] D. Kasen, R. Fern´andez,and B. D. Metzger. Kilonova light curves from the disc wind outflows of compact object mergers. MNRAS, 450:1777– 1786, June 2015.

[70] R. Kennedy, C. Frenk, S. Cole, and A. Benson. Constraining the warm dark matter particle mass with Milky Way satellites. MNRAS, 442:2487–2495, August 2014.

[71] M. J. Koop and L. S. Finn. Physical response of light-time gravitational wave detectors. Phys. Rev. D, 90(6):062002, September 2014.

[72] G. Kordopatis, J. Binney, G. Gilmore, R. F. G. Wyse, V. Be- lokurov, P. J. McMillan, P. Hatfield, E. K. Grebel, M. Steinmetz, J. F. Navarro, G. Seabroke, I. Minchev, C. Chiappini, O. Bienaym´e, J. Bland-Hawthorn, K. C. Freeman, B. K. Gibson, A. Helmi, U. Mu- nari, Q. Parker, W. A. Reid, A. Siebert, A. Siviero, and T. Zwitter. The rich are different: evidence from the RAVE survey for stellar radial migration. MNRAS, 447:3526–3535, March 2015.

[73] K. Kotera and A. Olinto. Resource Letter HECR-1: High-Energy Cos- mic Rays. American Journal of Physics, 82:638–648, July 2014.

[74] K. Kremer, J. Sepinsky, and V. Kalogera. Long-term Evolution of Double White Dwarf Binaries Accreting through Direct Impact. ApJ, 806:76, June 2015.

[75] M. R. Krumholz and J. C. Forbes. VADER: A flexible, robust, open- source code for simulating viscous thin accretion disks. Astronomy and Computing, 11:1–17, June 2015. [76] E. J. Lee, P. Chang, and N. Murray. Time-varying Dynamical Star Formation Rate. ApJ, 800:49, February 2015.

[77] N. Lee, D. B. Sanders, C. M. Casey, S. Toft, N. Z. Scoville, C.-L. Hung, E. Le Floc’h, O. Ilbert, H. J. Zahid, H. Aussel, P. Capak, J. S. Kartaltepe, L. J. Kewley, Y. Li, K. Schawinski, K. Sheth, and Q. Xiao. A Turnover in the Galaxy Main Sequence of Star Formation at M ∗ ˜ 10 10 M sun; for Redshifts z < 1.3. ApJ, 801:80, March 2015. [78] G. Leloudas, S. Schulze, T. Kr¨uhler,J. Gorosabel, L. Christensen, A. Mehner, A. de Ugarte Postigo, R. Amor´ın,C. C. Th¨one,J. P. An- derson, F. E. Bauer, A. Gallazzi, K. G. He lminiak, J. Hjorth, E. Ibar, D. Malesani, N. Morell, J. Vinko, and J. C. Wheeler. Spectroscopy of superluminous supernova host galaxies. A preference of hydrogen-poor events for extreme emission line galaxies. MNRAS, 449:917–932, May 2015.

[79] L. Lentati, J. Wagg, C. L. Carilli, D. Riechers, P. Capak, F. Wal- ter, M. Aravena, E. da Cunha, J. A. Hodge, R. J. Ivison, I. Smail, C. Sharon, E. Daddi, R. Decarli, M. Dickinson, M. Sargent, N. Scoville, and V. Smolˇc´c.COLDz: Karl G. Jansky Very Large Array Discovery of a Gas-rich Galaxy in COSMOS. ApJ, 800:67, February 2015.

[80] D. Levitan, P. J. Groot, T. A. Prince, S. R. Kulkarni, R. Laher, E. O. Ofek, B. Sesar, and J. Surace. Long-term photometric behaviour of outbursting AM CVn systems. MNRAS, 446:391–410, January 2015.

[81] H. Li and O. Y. Gnedin. Modeling the Formation of Globular Cluster Systems in the Virgo Cluster. ApJ, 796:10, November 2014.

[82] Y. Li, W. Hu, and M. Takada. Super-sample signal. Phys. Rev. D, 90(10):103530, November 2014.

[83] N. I. Libeskind, A. Knebe, Y. Hoffman, and S. Gottl¨ober. The universal nature of subhalo accretion. MNRAS, 443:1274–1280, September 2014.

[84] T. Linden. Circular Polarization of Pulsar Wind Nebulae and the Cosmic-Ray Positron Excess. ApJ, 799:200, February 2015. [85] R. R. Lindner, C. Vera-Ciro, C. E. Murray, S. Stanimirovi´c,B. Babler, C. Heiles, P. Hennebelle, W. M. Goss, and J. Dickey. Autonomous Gaussian Decomposition. AJ, 149:138, April 2015.

[86] D. Liu, A. Pe’er, and A. Loeb. A Two-component Jet Model for the Tidal Disruption Event Swift J164449.3+573451. ApJ, 798:13, January 2015.

[87] T. Liu, S. Gezari, S. Heinis, E. A. Magnier, W. S. Burgett, K. Cham- bers, H. Flewelling, M. Huber, K. W. Hodapp, N. Kaiser, R.-P. Ku- dritzki, J. L. Tonry, R. J. Wainscoat, and C. Waters. A Periodically Varying Luminous Quasar at z = 2 from the Pan-STARRS1 Medium Deep Survey: A Candidate Supermassive Black Hole Binary in the Gravitational Wave-driven Regime. ApJ, 803:L16, April 2015.

[88] M. MacLeod and E. Ramirez-Ruiz. Asymmetric Accretion Flows within a Common Envelope. ApJ, 803:41, April 2015.

[89] I. Mandel, C.-J. Haster, M. Dominik, and K. Belczynski. Distinguish- ing types of compact-object binaries using the gravitational-wave sig- natures of their mergers. MNRAS, 450:L85–L89, June 2015.

[90] R. Margutti, C. Guidorzi, D. Lazzati, D. Milisavljevic, A. Kamble, T. Laskar, J. Parrent, N. C. Gehrels, and A. M. Soderberg. Dust in the Wind: the Role of Recent Mass Loss in Long Gamma-Ray Bursts. ApJ, 805:159, June 2015.

[91] R. Margutti, D. Milisavljevic, A. M. Soderberg, C. Guidorzi, B. J. Morsony, N. Sanders, S. Chakraborti, A. Ray, A. Kamble, M. Drout, J. Parrent, A. Zauderer, and L. Chomiuk. Relativistic Supernovae have Shorter-lived Central Engines or More Extended Progenitors: The Case of SN 2012ap. ApJ, 797:107, December 2014.

[92] C. L. Martin, M. Dijkstra, A. Henry, K. T. Soto, C. W. Danforth, and J. Wong. The Lyα Line Profiles of Ultraluminous Infrared Galaxies: Fast Winds and Lyman Continuum Leakage. ApJ, 803:6, April 2015.

[93] S. T. McWilliams, J. P. Ostriker, and F. Pretorius. Gravitational Waves and Stalled Satellites from Massive Galaxy Mergers at z <= 1. ApJ, 789:156, July 2014. [94] M. J. Micha lowski, C. C. Hayward, J. S. Dunlop, V. A. Bruce, M. Cira- suolo, F. Cullen, and L. Hernquist. Determining the stellar masses of submillimetre galaxies: the critical importance of star formation histo- ries. A&A, 571:A75, November 2014.

[95] D. Milisavljevic, R. Margutti, J. T. Parrent, A. M. Soderberg, R. A. Fesen, P. Mazzali, K. Maeda, N. E. Sanders, S. B. Cenko, J. M. Sil- verman, A. V. Filippenko, A. Kamble, S. Chakraborti, M. R. Drout, R. P. Kirshner, T. E. Pickering, K. Kawabata, T. Hattori, E. Y. Hsiao, M. D. Stritzinger, G. H. Marion, J. Vinko, and J. C. Wheeler. The Broad-lined Type Ic SN 2012ap and the Nature of Relativistic Super- novae Lacking a Gamma-Ray Burst Detection. ApJ, 799:51, January 2015.

[96] M. C. Miller. Disk Winds as an Explanation for Slowly Evolving Tem- peratures in Tidal Disruption Events. ApJ, 805:83, May 2015.

[97] M. C. Miller and J. M. Miller. The masses and spins of neutron stars and stellar-mass black holes. Phys. Rep., 548:1–34, January 2015.

[98] D. Minniti, R. K. Saito, O. A. Gonzalez, M. Zoccali, M. Rejkuba, J. Alonso-Garc´ıa, R. Benjamin, M. Catelan, I. D´ek´any, J. P. Emerson, M. Hempel, P. W. Lucas, and M. Schultheis. Milky Way demographics with the VVV survey. III. Evidence for a great dark lane in the 157 million star bulge color-magnitude diagram. A&A, 571:A91, November 2014.

[99] H. Miyatake, S. More, R. Mandelbaum, M. Takada, D. N. Spergel, J.-P. Kneib, D. P. Schneider, J. Brinkmann, and J. R. Brownstein. The Weak Lensing Signal and the Clustering of BOSS Galaxies. I. Measurements. ApJ, 806:1, June 2015.

[100] S. More, H. Miyatake, R. Mandelbaum, M. Takada, D. N. Spergel, J. R. Brownstein, and D. P. Schneider. The Weak Lensing Signal and the Clustering of BOSS Galaxies. II. Astrophysical and Cosmological Constraints. ApJ, 806:2, June 2015.

[101] G. Morlino. Using optical lines to study particle acceleration at super- nova remnants. Nuclear Physics B Proceedings Supplements, 256:56–64, November 2014. [102] M. Morscher, B. Pattabiraman, C. Rodriguez, F. A. Rasio, and S. Um- breit. The Dynamical Evolution of Stellar Black Holes in Globular Clusters. ApJ, 800:9, February 2015.

[103] N. Murray and P. Chang. Star Formation in Self-gravitating Turbulent Fluids. ApJ, 804:44, May 2015.

[104] D. Narayanan and M. R. Krumholz. A theory for the excitation of CO in star-forming galaxies. MNRAS, 442:1411–1428, August 2014.

[105] K.-I. Nishikawa, P. E. Hardee, I. Dut¸an, J. Niemiec, M. Medvedev, Y. Mizuno, A. Meli, H. Sol, B. Zhang, M. Pohl, and D. H. Hartmann. Magnetic Field Generation in Core-sheath Jets via the Kinetic Kelvin- Helmholtz Instability. ApJ, 793:60, September 2014.

[106] E. Papastergis, R. Giovanelli, M. P. Haynes, and F. Shankar. Is there a ”too big to fail” problem in the field? A&A, 574:A113, February 2015.

[107] D. R. Pasham, S. B. Cenko, A. J. Levan, G. C. Bower, A. Horesh, G. C. Brown, S. Dolan, K. Wiersema, A. V. Filippenko, A. S. Fruchter, J. Greiner, P. T. OBrien, K. L. Page, A. Rau, and N. R. Tanvir. A Multiwavelength Study of the Relativistic Tidal Disruption Candidate Swift J2058.4+0516 at Late Times. ApJ, 805:68, May 2015.

[108] F. Patat, S. Taubenberger, N. L. J. Cox, D. Baade, A. Clocchiatti, P. H¨oflich, J. R. Maund, E. Reilly, J. Spyromilio, L. Wang, J. C. Wheeler, and P. Zelaya. Properties of extragalactic dust inferred from linear polarimetry of Type Ia Supernovae. A&A, 577:A53, May 2015.

[109] U. Peretz, E. Behar, and S. A. Drake. Coronae of stars with supersolar elemental abundances. A&A, 577:A93, May 2015.

[110] D. A. Perley, R. A. Perley, J. Hjorth, M. J. Micha lowski, S. B. Cenko, P. Jakobsson, T. Kr¨uhler,A. J. Levan, D. Malesani, and N. R. Tanvir. Connecting GRBs and ULIRGs: A Sensitive, Unbiased Survey for Ra- dio Emission from Gamma-Ray Burst Host Galaxies at 0 < z < 2.5. ApJ, 801:102, March 2015.

[111] A. Pillepich, M. Vogelsberger, A. Deason, V. Rodriguez-Gomez, S. Genel, D. Nelson, P. Torrey, L. V. Sales, F. Marinacci, V. Springel, D. Sijacki, and L. Hernquist. Halo mass and assembly history exposed in the faint outskirts: the stellar and dark matter haloes of Illustris galaxies. MNRAS, 444:237–249, October 2014.

[112] M. K. M. Prescott, C. L. Martin, and A. Dey. Spatially Resolved Gas Kinematics within a Lyα Nebula: Evidence for Large-scale Rotation. ApJ, 799:62, January 2015.

[113] Layne C. Price, Jonathan Frazer, Jiajun Xu, Hiranya V. Peiris, and Richard Easther. MULTIMODECODE : an efficient numerical solver for multifield inflation. JOURNAL OF COSMOLOGY AND AS- TROPARTICLE PHYSICS, (3):005, MAR 2015.

[114] A. M. Price-Whelan, D. W. Hogg, K. V. Johnston, and D. Hendel. Inferring the Gravitational Potential of the Milky Way with a Few Precisely Measured Stars. ApJ, 794:4, October 2014.

[115] W. Qi and J. B. Marston. Hyperviscosity and statistical equilibria of Euler turbulence on the torus and the sphere. Journal of Statistical Mechanics: Theory and Experiment, 7:20, July 2014.

[116] J. M. Rathborne, S. N. Longmore, J. M. Jackson, J. F. Alves, J. Bally, N. Bastian, Y. Contreras, J. B. Foster, G. Garay, J. M. D. Kruijssen, L. Testi, and A. J. Walsh. A Cluster in the Making: ALMA Reveals the Initial Conditions for High-mass Cluster Formation. ApJ, 802:125, April 2015.

[117] J. M. Rathborne, S. N. Longmore, J. M. Jackson, J. M. D. Kruijssen, J. F. Alves, J. Bally, N. Bastian, Y. Contreras, J. B. Foster, G. Garay, L. Testi, and A. J. Walsh. Turbulence Sets the Initial Conditions for Star Formation in High-pressure Environments. ApJ, 795:L25, Novem- ber 2014.

[118] B. A. Reid, H.-J. Seo, A. Leauthaud, J. L. Tinker, and M. White. A 2.5 per cent measurement of the growth rate from small-scale redshift space clustering of SDSS-III CMASS galaxies. MNRAS, 444:476–502, October 2014.

[119] K. Reidy, K. Quader, and K. Bedell. Approaching Pomeranchuk in- stabilities from ordered phase: A crossing-symmetric equation method. Nuclear Physics A, 928:168–179, August 2014. [120] T. Rindler-Daller, M. H. Montgomery, K. Freese, D. E. Winget, and B. Paxton. Dark Stars: Improved Models and First Pulsation Results. ApJ, 799:210, February 2015.

[121] G. P. Rosotti, J. E. Dale, M. de Juan Ovelar, D. A. Hubber, J. M. D. Kruijssen, B. Ercolano, and S. Walch. Protoplanetary disc evolution affected by star-disc interactions in young stellar clusters. MNRAS, 441:2094–2110, July 2014.

[122] R. Roˇskar, D. Fiacconi, L. Mayer, S. Kazantzidis, T. R. Quinn, and J. Wadsley. Orbital decay of supermassive black hole binaries in clumpy multiphase merger remnants. MNRAS, 449:494–505, May 2015.

[123] B. T. P. Rowe, M. Jarvis, R. Mandelbaum, G. M. Bernstein, J. Bosch, M. Simet, J. E. Meyers, T. Kacprzak, R. Nakajima, J. Zuntz, H. Miy- atake, J. P. Dietrich, R. Armstrong, P. Melchior, and M. S. S. Gill. GALSIM: The modular galaxy image simulation toolkit. Astronomy and Computing, 10:121–150, April 2015.

[124] G. R. Ruchti, J. I. Read, S. Feltzing, A. Pipino, and T. Bensby. The hunt for the Milky Way’s accreted disc. MNRAS, 444:515–526, October 2014.

[125] E. J. Ruiz and D. Huterer. Testing the dark energy consistency with geometry and growth. Phys. Rev. D, 91(6):063009, March 2015.

[126] D. J. Sand, D. Crnojevi´c,J. Strader, E. Toloba, J. D. Simon, N. Cald- well, P. Guhathakurta, B. McLeod, and A. C. Seth. Discovery of a New Faint Dwarf Galaxy Associated with NGC 253. ApJ, 793:L7, September 2014.

[127] A. Sander, T. Shenar, R. Hainich, A. G´ımenez-Garc´ıa,H. Todt, and W.-R. Hamann. On the consistent treatment of the quasi-hydrostatic layers in hot star atmospheres. A&A, 577:A13, May 2015.

[128] T. Sawala, C. S. Frenk, A. Fattahi, J. F. Navarro, R. G. Bower, R. A. Crain, C. Dalla Vecchia, M. Furlong, A. Jenkins, I. G. McCarthy, Y. Qu, M. Schaller, J. Schaye, and T. Theuns. Bent by baryons: the low-mass galaxy-halo relation. MNRAS, 448:2941–2947, April 2015. [129] E. Schaan, M. Takada, and D. N. Spergel. Joint likelihood func- tion of cluster counts and n -point correlation functions: Improving their power through including halo sample variance. Phys. Rev. D, 90(12):123523, December 2014. [130] M. Schaller, C. Becker, O. Ruchayskiy, A. Boyarsky, and M. Shaposh- nikov. A new framework for numerical simulations of structure forma- tion. MNRAS, 442:3073–3095, August 2014. [131] D. L. Shafer and D. Huterer. Multiplicative errors in the galaxy power spectrum: self-calibration of unknown photometric systematics for pre- cision cosmology. MNRAS, 447:2961–2969, March 2015. [132] P. Simon, E. Semboloni, L. van Waerbeke, H. Hoekstra, T. Erben, L. Fu, J. Harnois-D´eraps, C. Heymans, H. Hildebrandt, M. Kilbinger, T. D. Kitching, L. Miller, and T. Schrabback. CFHTLenS: a Gaussian likelihood is a sufficient approximation for a cosmological analysis of third-order cosmic shear statistics. MNRAS, 449:1505–1525, May 2015. [133] C. O. Smet, S. Posacki, and L. Ciotti. Miyamoto-Nagai discs embedded in the Binney logarithmic potential: analytical solution of the two- integrals Jeans equations. MNRAS, 448:2921–2933, April 2015. [134] R. J. Smith, S. C. O. Glover, and R. S. Klessen. On the nature of star- forming filaments - I. Filament morphologies. MNRAS, 445:2900–2917, December 2014. [135] N. Sravan, F. Valsecchi, V. Kalogera, and L. G. Althaus. Importance of Tides for Periastron Precession in Eccentric Neutron Star-White Dwarf Binaries. ApJ, 792:138, September 2014. [136] S. Stierwalt, L. Armus, V. Charmandaris, T. Diaz-Santos, J. Marshall, A. S. Evans, S. Haan, J. Howell, K. Iwasawa, D. C. Kim, E. J. Murphy, J. A. Rich, H. W. W. Spoon, H. Inami, A. O. Petric, and V. U. Mid- infrared Properties of Luminous Infrared Galaxies. II. Probing the Dust and Gas Physics of the GOALS Sample. ApJ, 790:124, August 2014. [137] S. Stierwalt, G. Besla, D. Patton, K. Johnson, N. Kallivayalil, M. Putman, G. Privon, and G. Ross. TiNy : The Role of Dwarf−−Dwarf Interactions in Low-mass Galaxy Evolution. ApJ, 805:2, May 2015. [138] J. Strader, L. Chomiuk, C. C. Cheung, D. J. Sand, D. Donato, R. H. D. Corbet, D. Koeppe, P. G. Edwards, J. Stevens, L. Petrov, R. Sali- nas, M. Peacock, T. Finzell, D. E. Reichart, and J. B. Haislip. 1FGL J1417.7−−4407: A Likely Gamma-Ray Bright Binary with a Massive Neutron Star and a Giant Secondary. ApJ, 804:L12, May 2015.

[139] M. Stringer, I. Trujillo, C. Dalla Vecchia, and I. Martinez-Valpuesta. A cosmological context for compact massive galaxies. MNRAS, 449:2396– 2404, May 2015.

[140] P. M. Sutter, B. D. Wandelt, and F. Elsner. Using hybrid GPU/CPU kernel splitting to accelerate spherical convolutions. Astronomy and Computing, 11:18–24, June 2015.

[141] M. Taghizadeh-Popp, S. M. Fall, R. L. White, and A. S. Szalay. Sim- ulating Deep Hubble Images with Semi-empirical Models of Galaxy Formation. ApJ, 801:14, March 2015.

[142] K. S. Tai, S. T. McWilliams, and F. Pretorius. Detecting gravita- tional waves from highly eccentric compact binaries. Phys. Rev. D, 90(10):103001, November 2014.

[143] M. Takada and D. N. Spergel. Joint analysis of cluster number counts and weak lensing power spectrum to correct for the super-sample co- variance. MNRAS, 441:2456–2475, July 2014.

[144] R. Takahashi, S. Soma, M. Takada, and I. Kayo. An optimal survey geometry of weak lensing survey: minimizing supersample covariance. MNRAS, 444:3473–3487, November 2014.

[145] A. Taylor and B. Joachimi. Estimating cosmological parameter covari- ance. MNRAS, 442:2728–2738, August 2014.

[146] P. Torrey, G. F. Snyder, M. Vogelsberger, C. C. Hayward, S. Genel, D. Sijacki, V. Springel, L. Hernquist, D. Nelson, M. Kriek, A. Pillepich, L. V. Sales, and C. K. McBride. Synthetic galaxy images and spectra from the Illustris simulation. MNRAS, 447:2753–2771, March 2015.

[147] C. Vera-Ciro, E. D’Onghia, J. Navarro, and M. Abadi. The Effect of Radial Migration on Galactic Disks. ApJ, 794:173, October 2014. [148] M. G. Walker, E. W. Olszewski, and M. Mateo. Bayesian analysis of resolved stellar spectra: application to MMT/Hectochelle observations of the Draco dwarf spheroidal. MNRAS, 448:2717–2732, April 2015.

[149] D. F. Watson, A. P. Hearin, A. A. Berlind, M. R. Becker, P. S. Behroozi, R. A. Skibba, R. Reyes, A. R. Zentner, and F. C. van den Bosch. Predicting galaxy star formation rates via the co-evolution of galaxies and haloes. MNRAS, 446:651–662, January 2015.

[150] D. R. Weisz, A. E. Dolphin, E. D. Skillman, J. Holtzman, K. M. Gilbert, J. J. Dalcanton, and B. F. Williams. The Star Formation Histories of Local Group Dwarf Galaxies. III. Characterizing Quench- ing in Low-mass Galaxies. ApJ, 804:136, May 2015.

[151] D. R. Weisz, B. D. Johnson, and C. Conroy. The Very Faint End of the UV Luminosity Function over Cosmic Time: Constraints from the Local Group Fossil Record. ApJ, 794:L3, October 2014.

[152] J. C. Wheeler, D. Kagan, and E. Chatzopoulos. The Role of the Mag- netorotational Instability in Massive Stars. ApJ, 799:85, January 2015.

[153] B. C. Whitmore, C. Brogan, R. Chandar, A. Evans, J. Hibbard, K. Johnson, A. Leroy, G. Privon, A. Remijan, and K. Sheth. ALMA Observations of the Antennae Galaxies. I. A New Window on a Proto- typical Merger. ApJ, 795:156, November 2014.

[154] V. Wild, F. Rosales-Ortega, J. Falc´on-Barroso, R. Garc´ıa-Benito, A. Gallazzi, R. M. Gonz´alezDelgado, S. Bekerait´e,A. Pasquali, P. H. Johansson, B. Garc´ıaLorenzo, G. van de Ven, M. Pawlik, E. Per´ez, A. Monreal-Ibero, M. Lyubenova, R. Cid Fernandes, J. M´endez-Abreu, J. Barrera-Ballesteros, C. Kehrig, J. Iglesias-P´aramo, D. J. Bomans, I. M´arquez, B. D. Johnson, R. C. Kennicutt, B. Husemann, D. Mast, S. F. S´anchez, C. J. Walcher, J. Alves, A. L. Aguerri, A. Alonso Herrero, J. Bland-Hawthorn, C. Catal´an-Torrecilla, E. Florido, J. M. Gomes, K. Jahnke, A.´ R. L´opez-S´anchez, A. de Lorenzo-C´aceres, R. A. Marino, E. M´armol-Queralt´o,P. Olden, A. del Olmo, P. Papaderos, A. Quirren- bach, J. M. V´ılchez, and B. Ziegler. The Mice at play in the CALIFA survey. A case study of a gas-rich major merger between first passage and coalescence. A&A, 567:A132, July 2014. [155] J. A. Zavala, I. Aretxaga, and D. H. Hughes. The redshift distribution of submillimetre galaxies at different wavelengths. MNRAS, 443:2384– 2390, September 2014.

[156] A. R. Zentner, A. P. Hearin, and F. C. van den Bosch. Galaxy as- sembly bias: a significant source of systematic error in the galaxy-halo relationship. MNRAS, 443:3044–3067, October 2014.

[157] Y. Zheng, P. Zhang, and Y. Jing. Sampling artifact in volume weighted velocity measurement. II. Detection in simulations and comparison with theoretical modeling. Phys. Rev. D, 91(4):043523, February 2015. Condensed Matter Physics

[1] E. Abrahams, J. Schmalian, and P. W¨olfle.Strong-coupling theory of heavy-fermion criticality. Phys. Rev. B, 90(4):045105, July 2014.

[2] D. F. Agterberg, E. Babaev, and J. Garaud. Microscopic prediction of skyrmion lattice state in clean interface superconductors. Phys. Rev. B, 90(6):064509, August 2014.

[3] T. Albash, T. F. Ronnow, M. Troyer, and D. A. Lidar. Reexamining classical and quantum models for the D-Wave One processor. EURO- PEAN PHYSICAL JOURNAL-SPECIAL TOPICS, 224(1):111–129, FEB 2015.

[4] E. Altman, L. M. Sieberer, L. Chen, S. Diehl, and J. Toner. Two-Dimensional Superfluidity of Exciton Polaritons Requires Strong Anisotropy. Physical Review X, 5(1):011017, January 2015.

[5] C. J. Arguello, E. P. Rosenthal, E. F. Andrade, W. Jin, P. C. Yeh, N. Zaki, S. Jia, R. J. Cava, R. M. Fernandes, A. J. Millis, T. Valla, R. M. Osgood, and A. N. Pasupathy. Quasiparticle Interference, Quasi- particle Interactions, and the Origin of the Charge Density Wave in 2 H -NbSe2. Physical Review Letters, 114(3):037001, January 2015. [6] S. Banerjee, J. Rowland, O. Erten, and M. Randeria. Enhanced Sta- bility of Skyrmions in Two-Dimensional Chiral Magnets with Rashba Spin-Orbit Coupling. Physical Review X, 4(3):031045, July 2014.

[7] H. Barghathi and T. Vojta. Phase Transitions on Random Lattices: How Random is Topological Disorder? Physical Review Letters, 113(12):120602, September 2014. [8] G. Baym, D. H. Beck, and C. J. Pethick. Low-Temperature Transport Properties of Very Dilute Classical Solutions of 3He in Superfluid 4He. Journal of Low Temperature Physics, 178:200–228, February 2015.

[9] A. Bellafard, S. Chakravarty, M. Troyer, and H. G. Katzgraber. The ef- fect of quenched bond disorder on first-order phase transitions. Annals of Physics, 357:66–78, June 2015.

[10] E. Berg, S. D. Huber, and N. H. Lindner. Sign reversal of the Hall response in a crystalline superconductor. Phys. Rev. B, 91(2):024507, January 2015.

[11] T. S. Biswas, Jin Xu, N. Miriyala, C. Doolin, T. Thundat, J. P. Davis, and K. S. D. Beach. Time-Resolved Mass Sensing of a Molecular Adsor- bate Nonuniformly Distributed Along a Nanomechnical String. PHYS- ICAL REVIEW APPLIED, 3(6):064002, JUN 3 2015.

[12] T. A. Bojesen and A. Sudbø. Josephson-frustrated superconductors in a magnetic field. Phys. Rev. B, 90(13):134512, October 2014.

[13] C. A. B¨usser,I. de Vega, and F. Heidrich-Meisner. Decoherence of an entangled state of a strongly correlated double quantum dot structure through tunneling processes. Phys. Rev. B, 90(20):205118, November 2014.

[14] Z. Cai, U. Schollw¨ock, and L. Pollet. Identifying a Bath-Induced Bose Liquid in Interacting Spin-Boson Models. Physical Review Letters, 113(26):260403, December 2014.

[15] P. Chandra, P. Coleman, and R. Flint. Hastatic order in URu2Si2 : Hybridization with a twist. Phys. Rev. B, 91(20):205103, May 2015.

[16] Y. Chen, Y.-M. Lu, and H.-Y. Kee. Topological crystalline metal in orthorhombic perovskite iridates. Nature Communications, 6:6593, March 2015.

[17] A. L. Chernyshev and M. E. Zhitomirsky. Quantum Selection of Order in an X X Z Antiferromagnet on a Kagome Lattice. Physical Review Letters, 113(23):237202, December 2014. [18] H. M. Christensen, I. M. Moroz, and T. N. Palmer. Evaluation of ensemble forecast uncertainty using a new proper score: Application to medium-range and seasonal forecasts. QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 141(687, B):538–549, JAN 2015.

[19] M. di Liberto, T. Comparin, T. Kock, M. Olschl¨ager,¨ A. Hemmerich, and C. M. Smith. Controlling coherence via tuning of the popula- tion imbalance in a bipartite optical lattice. Nature Communications, 5:5735, December 2014.

[20] M. Dolfi, A. Kantian, B. Bauer, and M. Troyer. Minimizing nonadia- baticities in optical-lattice loading. Phys. Rev. A, 91(3):033407, March 2015.

[21] S. Ducatman, R. M. Fernandes, and N. B. Perkins. Theory of the evolution of magnetic order in Fe1+yTe compounds with increasing in- terstitial iron. Phys. Rev. B, 90(16):165123, October 2014.

[22] J. K. Freericks, B. K. Nikoli´c, and O. Frieder. The nonequilibrium quantum many-body problem as a paradigm for extreme data science. International Journal of Modern Physics B, 28:30021, December 2014.

[23] Tetsuya Furukawa, Kazuya Miyagawa, Hiromi Taniguchi, Reizo Kato, and Kazushi Kanoda. Quantum criticality of Mott transition in organic materials. NATURE PHYSICS, 11(3):221–224, MAR 2015.

[24] S. Gazit, D. Podolsky, and A. Auerbach. Critical Capacitance and Charge-Vortex Duality Near the Superfluid-to-Insulator Transition. Physical Review Letters, 113(24):240601, December 2014.

[25] J. Gukelberger, E. Kozik, L. Pollet, N. Prokof’ev, M. Sigrist, B. Svis- tunov, and M. Troyer. p -Wave Superfluidity by Spin-Nematic Fermi Surface Deformation. Physical Review Letters, 113(19):195301, Novem- ber 2014.

[26] F. Harper, S. H. Simon, and R. Roy. Perturbative approach to flat Chern bands in the Hofstadter model. Phys. Rev. B, 90(7):075104, August 2014. [27] K. R. A. Hazzard, M. van den Worm, M. Foss-Feig, S. R. Manmana, E. G. Dalla Torre, T. Pfau, M. Kastner, and A. M. Rey. Quantum correlations and entanglement in far-from-equilibrium spin systems. Phys. Rev. A, 90(6):063622, December 2014.

[28] J. Hellsvik, M. Balestieri, T. Usui, A. Stroppa, A. Bergman, L. Bergqvist, D. Prabhakaran, O. Eriksson, S. Picozzi, T. Kimura, and J. Lorenzana. Tuning order-by-disorder multiferroicity in CuO by doping. Phys. Rev. B, 90(1):014437, July 2014.

[29] M. Hermele. String flux mechanism for fractionalization in topologi- cally ordered phases. Phys. Rev. B, 90(18):184418, November 2014.

[30] C. Hickey and A. Paramekanti. Thermal Phase Transitions of Strongly Correlated Bosons with Spin-Orbit Coupling. Physical Review Letters, 113(26):265302, December 2014.

[31] E. Hohlfeld and B. Davidovitch. Sheet on a deformable sphere: Wrin- kle patterns suppress curvature-induced delamination. Phys. Rev. E, 91(1):012407, January 2015.

[32] A. K. Ibrahim, H. Barghathi, and T. Vojta. Enhanced rare-region effects in the contact process with long-range correlated disorder. Phys. Rev. E, 90(4):042132, October 2014.

[33] S. V. Isakov, I. N. Zintchenko, T. F. Ronnow, and M. Troyer. Optimised simulated annealing for Ising spin glasses. COMPUTER PHYSICS COMMUNICATIONS, 192:265–271, JUL 2015.

[34] H. Javan Mard, J. A. Hoyos, E. Miranda, and V. Dobrosavljevi´c. Strong-disorder renormalization-group study of the one-dimensional tight-binding model. Phys. Rev. B, 90(12):125141, September 2014.

[35] K. Jiang, S. Zhou, and Z. Wang. Textured electronic states of the triangular-lattice Hubbard model and NaxCoO2. Phys. Rev. B, 90(16):165135, October 2014.

[36] Y. T. Katan and D. Podolsky. Spectral function of the Higgs mode in 4 - dimensions. Phys. Rev. B, 91(7):075132, February 2015. [37] D. V. Khveshchenko. Analogue holographic correspondence in optical metamaterials. EPL, 109(6):61001, MAR 2015.

[38] S. Kiesewetter, Q. Y. He, P. D. Drummond, and M. D. Reid. Scalable quantum simulation of pulsed entanglement and Einstein-Podolsky- Rosen steering in optomechanics. Phys. Rev. A, 90(4):043805, October 2014.

[39] S. K. Kim, Y. Tserkovnyak, and O. Tchernyshyov. Propulsion of a domain wall in an antiferromagnet by magnons. Phys. Rev. B, 90(10):104406, September 2014.

[40] Younghyun Kim, Junhua Zhang, E. Rossi, and Roman M. Lutchyn. Impurity-Induced Bound States in Superconductors with Spin-Orbit Coupling. PHYSICAL REVIEW LETTERS, 114(23):236804, JUN 12 2015.

[41] Lukas Kimme, Timo Hyart, and Bernd Rosenow. Symmetry-protected topological invariant and Majorana impurity states in time-reversal- invariant superconductors. PHYSICAL REVIEW B, 91(22):220501, JUN 2 2015.

[42] T. R. Kirkpatrick and D. Belitz. Preasymptotic Critical Behavior and Effective Exponents in Disordered Metallic Quantum Ferromagnets. Physical Review Letters, 113(12):127203, September 2014.

[43] M. S. Krieger, S. E. Spagnolie, and T. R. Powers. Locomotion and transport in a hexatic liquid crystal. Phys. Rev. E, 90(5):052503, November 2014.

[44] B. Li, M. Stalzer, and M. Ortiz. A massively parallel implementation of the Optimal Transportation Meshfree method for explicit solid dynam- ics. INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 100(1):40–61, OCT 5 2014.

[45] Jiajun Li, Camille Aron, Gabriel Kotliar, and Jong E. Han. Electric- Field-Driven Resistive Switching in the Dissipative Hubbard Model. PHYSICAL REVIEW LETTERS, 114(22):226403, JUN 4 2015. [46] L. Liang, Z. Wang, and Y. Yu. Distinct-symmetry spin-liquid states and phase diagram of the Kitaev-Hubbard model. Phys. Rev. B, 90(7):075119, August 2014.

[47] D. E. Liu, M. Cheng, and R. M. Lutchyn. Probing Majorana physics in quantum-dot shot-noise experiments. Phys. Rev. B, 91(8):081405, February 2015.

[48] Q.-Q. L¨u,K. R. Patton, and D. E. Sheehy. Self-consistent Hartree- Fock approach for interacting bosons in optical lattices. Phys. Rev. A, 90(6):063625, December 2014.

[49] X. Lu, J. T. Park, R. Zhang, H. Luo, A. H. Nevidomskyy, Q. Si, and P. Dai. Nematic spin correlations in the tetragonal state of uniaxial- strained BaFe2−xNixAs2. Science, 345:657–660, August 2014. [50] S. Maiti, V. Zyuzin, and D. L. Maslov. Collective modes in two- and three-dimensional electron systems with Rashba spin-orbit coupling. Phys. Rev. B, 91(3):035106, January 2015.

[51] R. S. Markiewicz, G. Seibold, J. Lorenzana, and A. Bansil. Gutzwiller charge phase diagram of cuprates, including electron−−phonon cou- pling effects. New Journal of Physics, 17(2):023074, February 2015.

[52] G. M¨oller,L. Hormozi, J. Slingerland, and S. H. Simon. Josephson- coupled Moore-Read states. Phys. Rev. B, 90(23):235101, December 2014.

[53] T. Morgan-Wall, B. Leith, N. Hartman, A. Rahman, and N. Markovi´c. Measurement of Critical Currents of Superconducting Aluminum Nanowires in External Magnetic Fields: Evidence for a Weber Block- ade. Physical Review Letters, 114(7):077002, February 2015.

[54] R. A. Muniz, Y. Kato, and C. D. Batista. Generalized spin-wave theory: Application to the bilinear-biquadratic model. Progress of Theoretical and Experimental Physics, 2014(8):080003, August 2014.

[55] G. Murthy, E. Shimshoni, and H. A. Fertig. Collective edge modes near the onset of a graphene quantum spin Hall state. Phys. Rev. B, 90(24):241410, December 2014. [56] S. Nadj-Perge, I. K. Drozdov, J. Li, H. Chen, S. Jeon, J. Seo, A. H. MacDonald, B. A. Bernevig, and A. Yazdani. Observation of Majorana fermions in ferromagnetic atomic chains on a superconductor. Science, 346:602–607, October 2014.

[57] P. Naidon, S. Endo, and M. Ueda. Physical origin of the universal three- body parameter in atomic Efimov physics. Phys. Rev. A, 90(2):022106, August 2014.

[58] P. Nikoli´c. Two-dimensional heavy fermions on the strongly cor- related boundaries of Kondo topological insulators. Phys. Rev. B, 90(23):235107, December 2014.

[59] P. Nikoli´c. Vortices and vortex states in Rashba spin-orbit-coupled condensates. Phys. Rev. A, 90(2):023623, August 2014.

[60] H. Oike, K. Miyagawa, H. Taniguchi, and K. Kanoda. Pressure-Induced Mott Transition in an Organic Superconductor with a Finite Doping Level. Physical Review Letters, 114(6):067002, February 2015.

[61] M. Otsuki and H. Hayakawa. Avalanche contribution to shear modulus of granular materials. Phys. Rev. E, 90(4):042202, October 2014.

[62] K. Pakrouski, M. R. Peterson, T. Jolicoeur, V. W. Scarola, C. Nayak, and M. Troyer. Phase Diagram of the ν =5 /2 Fractional Quantum Hall Effect: Effects of Landau-Level Mixing and Nonzero Width. Physical Review X, 5(2):021004, April 2015.

[63] S. A. Parameswaran, T. Grover, D. A. Abanin, D. A. Pesin, and A. Vishwanath. Probing the Chiral Anomaly with Nonlocal Trans- port in Three-Dimensional Topological Semimetals. Physical Review X, 4(3):031035, July 2014.

[64] Y. Peng, F. Pientka, L. I. Glazman, and F. von Oppen. Strong Lo- calization of Majorana End States in Chains of Magnetic Adatoms. Physical Review Letters, 114(10):106801, March 2015.

[65] O. Petrova, P. Mellado, and O. Tchernyshyov. Unpaired Majorana modes on dislocations and string defects in Kitaev’s honeycomb model. Phys. Rev. B, 90(13):134404, October 2014. [66] J. H. Pixley, A. Cai, and Q. Si. Cluster extended dynamical mean- field approach and unconventional superconductivity. Phys. Rev. B, 91(12):125127, March 2015.

[67] J. H. Pixley, L. Deng, K. Ingersent, and Q. Si. Pairing correla- tions near a Kondo-destruction quantum critical point. Phys. Rev. B, 91(20):201109, May 2015.

[68] J. H. Pixley, A. Shashi, and A. H. Nevidomskyy. Frustration and multicriticality in the antiferromagnetic spin-1 chain. Phys. Rev. B, 90(21):214426, December 2014.

[69] J. H. Pixley, R. Yu, and Q. Si. Quantum Phases of the Shastry- Sutherland Kondo Lattice: Implications for the Global Phase Diagram of Heavy-Fermion Metals. Physical Review Letters, 113(17):176402, October 2014.

[70] Z. Qi, A. L. Kitt, H. S. Park, V. M. Pereira, D. K. Campbell, and A. H. Castro Neto. Pseudomagnetic fields in graphene nanobubbles of constrained geometry: A molecular dynamics study. Phys. Rev. B, 90(12):125419, September 2014.

[71] K. Quader and M. Widom. Lifshitz and other transitions in alkaline- earth 122 pnictides under pressure. Phys. Rev. B, 90(14):144512, Oc- tober 2014.

[72] J. Radi´c, S. S. Natu, and V. Galitski. Stoner Ferromagnetism in a Thermal Pseudospin-1 /2 Bose Gas. Physical Review Letters, 113(18):185302, October 2014.

[73] A. Rahman, J. W. Guikema, N. M. Hassan, and N. Markovi´c.Angle- dependent transmission in graphene heterojunctions. Applied Physics Letters, 106(1):013112, January 2015.

[74] Atikur Rahman, Janice Wynn Guikema, and Nina Markovic. Quantum Noise and Asymmetric Scattering of Electrons and Holes in Graphene. NANO LETTERS, 14(11):6621–6625, NOV 2014.

[75] C. R. Reeg and D. L. Maslov. Zero-energy bound state at the interface between an s-wave superconductor and a disordered normal metal with repulsive electron-electron interactions. Phys. Rev. B, 90(2):024502, July 2014.

[76] J. Reutlinger, L. Glazman, Y. V. Nazarov, and W. Belzig. Secondary ”smile”-gap in the density of states of a diffusive Josephson junction for a wide range of contact types. Phys. Rev. B, 90(1):014521, July 2014.

[77] P. Ronhovde and Z. Nussinov. Local multiresolution order in commu- nity detection. Journal of Statistical Mechanics: Theory and Experi- ment, 1:1, January 2015.

[78] T. F. Rønnow, Z. Wang, J. Job, S. Boixo, S. V. Isakov, D. Wecker, J. M. Martinis, D. A. Lidar, and M. Troyer. Defining and detecting quantum speedup. Science, 345:420–424, July 2014.

[79] J. Ruhman and E. Berg. Ferromagnetic and nematic non-Fermi liq- uids in spin-orbit-coupled two-dimensional Fermi gases. Phys. Rev. B, 90(23):235119, December 2014.

[80] J. Ruhman, E. Berg, and E. Altman. Topological States in a One- Dimensional Fermi Gas with Attractive Interaction. Physical Review Letters, 114(10):100401, March 2015.

[81] Y. Sang, D. Belitz, and T. R. Kirkpatrick. Disorder Dependence of the Ferromagnetic Quantum Phase Transition. Physical Review Letters, 113(20):207201, November 2014.

[82] S. Sayyad and M. Eckstein. Coexistence of excited polarons and metastable delocalized states in photoinduced metals. Phys. Rev. B, 91(10):104301, March 2015.

[83] R. Schaffer, E. K.-H. Lee, Y.-M. Lu, and Y. B. Kim. Topological Spinon Semimetals and Gapless Boundary States in Three Dimensions. Physical Review Letters, 114(11):116803, March 2015.

[84] E. Sela, H.-C. Jiang, M. H. Gerlach, and S. Trebst. Order-by-disorder and spin-orbital liquids in a distorted Heisenberg-Kitaev model. Phys. Rev. B, 90(3):035113, July 2014. [85] Yasuyuki Shimura, Masaki Tsujimoto, Bin Zeng, Luis Balicas, Akito Sakai, and Satoru Nakatsuji. Field-induced quadrupolar quantum crit- icality in PrV2Al20. PHYSICAL REVIEW B, 91(24):241102, JUN 4 2015.

[86] O. Shlagman and E. Shimshoni. Plaquette order in a dimerized frus- trated spin ladder. Phys. Rev. B, 90(19):195143, November 2014.

[87] Y. Sizyuk, C. Price, P. W¨olfle, and N. B. Perkins. Importance of anisotropic exchange interactions in honeycomb iridates: Minimal model for zigzag antiferromagnetic order in Na2IrO3. Phys. Rev. B, 90(15):155126, October 2014.

[88] J. Smrek and A. Y Grosberg. Understanding the dynamics of rings in the melt in terms of the annealed tree model. Journal of Physics Condensed Matter, 27(6):064117, February 2015.

[89] S. V. Syzranov, M. L. Wall, V. Gurarie, and A. M. Rey. Spin−−orbital dynamics in a system of polar molecules. Nature Communications, 5:5391, November 2014.

[90] E. J. Torres-Herrera and L. F. Santos. Nonexponential fidelity decay in isolated interacting quantum systems. Phys. Rev. A, 90(3):033623, September 2014.

[91] H. Ueda and S. Onoda. Symmetry-protected topological phases and transition in a frustrated spin-1/2 XXZ chain. Phys. Rev. B, 90(21):214425, December 2014.

[92] J. I. V¨ayrynen, M. Goldstein, Y. Gefen, and L. I. Glazman. Resistance of helical edges formed in a semiconductor heterostructure. Phys. Rev. B, 90(11):115309, September 2014.

[93] T. Vojta, J. Igo, and J. A. Hoyos. Rare regions and Griffiths singular- ities at a clean critical point: The five-dimensional disordered contact process. Phys. Rev. E, 90(1):012139, July 2014.

[94] M. Vucelja, K. S. Turitsyn, and M. Chertkov. Extreme-value statistics of work done in stretching a polymer in a gradient flow. Phys. Rev. E, 91(2):022123, February 2015. [95] Z. Wang and A. H. Nevidomskyy. Orbital nematic order and interplay with magnetism in the two-orbital Hubbard model. Journal of Physics Condensed Matter, 27(22):225602, June 2015.

[96] D. Wecker, B. Bauer, B. K. Clark, M. B. Hastings, and M. Troyer. Gate-count estimates for performing quantum chemistry on small quan- tum computers. Phys. Rev. A, 90(2):022305, August 2014.

[97] J. Weiss, W. B. Rhouma, T. Richeton, S. Dechanel, F. Louchet, and L. Truskinovsky. From Mild to Wild Fluctuations in Crystal Plasticity. Physical Review Letters, 114(10):105504, March 2015.

[98] S. L. Yang, J. A. Sobota, D. Leuenberger, Y. He, M. Hashimoto, D. H. Lu, H. Eisaki, P. S. Kirchmann, and Z. X. Shen. Inequivalence of Single-Particle and Population Lifetimes in a Cuprate Superconductor. PHYSICAL REVIEW LETTERS, 114(24):247001, JUN 15 2015.

[99] Yi-feng Yang and David Pines. Emergence of superconductivity in heavy-electron materials. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMER- ICA, 111(51):18178–18182, DEC 23 2014.

[100] T. Zhang, J. M. Schwarz, and M. Das. Mechanics of anisotropic spring networks. Phys. Rev. E, 90(6):062139, December 2014.

[101] Qiong Zhu, Xin Wan, Rajesh Narayanan, Jose A. Hoyos, and Thomas Vojta. Emerging criticality in the disordered three-color Ashkin-Teller model. PHYSICAL REVIEW B, 91(22):224201, JUN 8 2015.

[102] S. Zhu, Y.-Q. Li, and C. D. Batista. Spin-orbit coupling and elec- tronic charge effects in Mott insulators. Phys. Rev. B, 90(19):195107, November 2014. Biological Physics

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[3] Fred Chang and Kerwyn Casey Huang. How and why cells grow as rods. BMC BIOLOGY, 12:54, AUG 2 2014.

[4] Lin Chen, Javad Noorbakhsh, Rhys M. Adams, Joseph Samaniego- Evans, Germaine Agollah, Dmitry Nevozhay, Jennie Kuzdzal-Fick, Pankaj Mehta, and Gabor Balazsi. Two-Dimensionality of Yeast Colony Expansion Accompanied by Pattern Formation. PLOS COMPUTA- TIONAL BIOLOGY, 10(12):e1003979, DEC 2014.

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[6] Yukun Gao, Marianna Neubauer, Alexander Yang, Nathan Johnson, Michael Morse, Guanglai Li, and Jay X. Tang. Altered motility of Caulobacter Crescentus in viscous and viscoelastic media. BMC MI- CROBIOLOGY, 14:322, DEC 24 2014. [7] Christoph A. Haselwandter and Ned S. Wingreen. The Role of Membrane-Mediated Interactions in the Assembly and Architecture of Chemoreceptor Lattices. PLOS COMPUTATIONAL BIOLOGY, 10(12):e1003932, DEC 2014.

[8] O. Kahraman, W. S. Klug, and C. A. Haselwandter. Signatures of pro- tein structure in the cooperative gating of mechanosensitive ion chan- nels. EPL (Europhysics Letters), 107:48004, August 2014.

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