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Atomic recoil
13680.Pdf
Potentialities of a Low-Energy Detector Based on $^ 4$ He Evaporation to Observe Atomic Effects in Coherent Neutrino Scattering and Physics Perspectives
Metallurgy Materials Programs
Potentialities of a Low-Energy Detector Based on He4 Evaporation to Observe Atomic Effects in Coherent Neutrino Scattering and P
The Treatment of Electronic Excitations in Atomistic Models of Radiation Damage in Metals
Earth-Bound Millicharge Relics
Neutron-Induced Damage Simulations: Beyond Defect Production Cross-Section, Displacement Per Atom and Iron-Based Metrics
Arxiv:1707.07258V4 [Hep-Ph] 30 Mar 2020
Neutron Exposure
U.S. ATOMIC ENERGY COMMISSION Division of Technical Information Microstructure of MATTER by Clifford E
Gas Detectors
Radiation Physics for Medical Physicists
Neutrinos at the Spallation Neutron Source
Atomki Preprint Hu Issn 0231-2468
CODATA Recommended Values of the Fundamental Physical Constants: 2010
ICCF-7 • • " 9 2 Y I , I "7L
Pos(ICHEP2020)211 AS) a and A
Recoil Momentum Effects in Quantum Processes Induced by Twisted Photons
Top View
Measurement of the Energy Spectrum of 6°Ni Recoils Following 60CO Decay Using Nuclear Resonance Fluorescence
Thorium Research in the Manhattan Project Era
Electron-Volt Neutron Spectroscopy: Beyond
Primary Radiation Damage in Materials NEA/NSC/DOC(2015)9
1 Proposed Experiments to Detect Kev Range Sterile Neutrinos Using Energy-‐Momentum
In Search of the Supermassive Magnetic Monopole
Primary Radiation Damage: a Review of Current Understanding and Models
Thorium Research in the Manhattan Project Era
2020 Michael Bishof Argonne National “A Neutral-Atom Quantum Simulator for Laboratory Uclear Physics”