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Bose gas
Chapter 3 Bose-Einstein Condensation of an Ideal
Arxiv:2102.13616V2 [Cond-Mat.Quant-Gas] 30 Jul 2021 That Preserve Stability of the Underlying Problem1
Arxiv:1703.09878V2 [Cond-Mat.Quant-Gas] 17 Jul 2017 Studies of BKT Physics in Two Dimensions Using Quantum Gases Are Numerous
Scientific and Related Works of Chen Ning Yang
The Two-Dimensional Bose Gas in Box Potentials Laura Corman
Bose Polarons at Finite Temperature and Strong Coupling
Dynamic Correlations in a Charged Bose Gas
The Non-Interacting Bose Gas
Coherence and Perturbed Dynamics in Magnon Bose Einstein Condensates
Bose-Einstein Condensation in an Ultrahigh Magnetic Field
Chapter 1 Introduction (PDF 431KB)
Weakly Interacting Bose Gas
The Quest for an Excitonic Bose Condensate
Bose-Einstein Condensates As Universal Quantum Matter C S Unnikrishnan
Ideal Quantum Gases from Statistical Physics Using Mathematica © James J
Lecture 14: Bose Condensation Ideal Bose Gas We Consider an Gas of Ideal, Spinless Bosons in Three Dimensions
8.044 Lecture Notes Chapter 9: Quantum Ideal Gases
Magnon Condensation and Spin Superfluidity
Top View
Statistical Physics Section 5: Bose-Einstein Condensation in This Section We Discuss the Thermodynamic Properties of the Ideal Bose Gas
Bose-Einstein Condensation M.N.Kiselev
Ideal Quantum Gases in D-Dimensional Space and Power-Law Potentials
Direct Evidence of Spatial Stability of Bose-Einstein Condensate of Magnons ✉ I
Bose Polarons in the Strongly Interacting Regime
The Inverse-Square Interaction Phase Diagram: Unitarity in the Bosonic Ground State
Lecture Notes on Many-Body Theory
Phenomena in Cold Exciton Gases: Condensation, Macroscopic Ordering and Beyond L.V
Bose-Einstein Condensation
Stamper-Kurn
Excitation of Phonons in a Bose-Einstein Condensate by Light Scattering
High-Temperature Bose-Einstein Condensation of Polaritons: Realization Under the Intracavity Laser Pumping of Matter Condition
Dilute Fermi and Bose Gases
And Double-Layer Bose Systems
Arxiv:1702.00846V2 [Cond-Mat.Quant-Gas]
Lecture 26. Bose-Einstein Condensation
Bose Systems
Chapter 4 Bogoliubov Theory of the Weakly Interacting Bose
Arxiv:1904.02283V1 [Physics.Hist-Ph] 3 Apr 2019 Nlivnin E Oimdaeapiain Nmany in Physics
(2020) Strong Coupling Bose Polarons in a Two-Dimensional
Cooling Phonon Modes of a Bose Condensate with Uniform Few Body Losses
Beyond-Luttinger-Liquid Thermodynamics of a One-Dimensional Bose Gas with Repulsive Contact Interactions
Bose Polarons and Rotating Gases in an Ultracold Bose-Fermi Gas Mixture of 40K and 87Rb Atoms
Ionic Polaron in a Bose-Einstein Condensate ✉ Grigory E
Theory of the Charged Bose Gas: Bose-Einstein Condensation in an Ultrahigh Magnetic Field
Direct Measurement of Polariton–Polariton Interaction Strength
Chapter 3. Bose-Einstein Condensation of Weakly Interacting Atomic Gases
June 27, 2001 13:47 WSPC/143-IJMPE 2-H-Yang1
Arxiv:1411.6822V1 [Cond-Mat.Quant-Gas] 25 Nov 2014 Tive Mass, Typically of the Order of 10 Times the Bare Ing to Exciton-Polariton Condensates
Gaussian Fluctuations in an Ideal Bose-Gas – a Simple Model
Towards Bose–Einstein Condensation of Excitons in Potential Traps
Polariton Condensation, Beyond the Weakly Interacting Bose Gas
5 Quantum Statistics : Worked Examples
The Planck Distribution of Phonons in a Bose-Einstein Condensate
Spontaneous Coherence in a Cold Exciton Gas
Creation of Rydberg Polarons in a Bose Gas
Arxiv:1702.01901V1 [Physics.Hist-Ph] 7 Feb 2017 Cube of 8 Cm × 8 Cm × 6.6 Cm (Fig
Methods for a Nonuniform Bose Gas
Arxiv:1705.09511V1 [Cond-Mat.Quant-Gas]
Negative Refraction and Rotons in the Relativistic Bose
Arxiv:2010.15558V2 [Cond-Mat.Quant-Gas] 9 Apr 2021
Gardiner's Phonon for Bose-Einstein Condensation: a Physical Realization of The
Supercurrent in a Room-Temperature Bose–Einstein Magnon Condensate
Topological Excitations in an Atomic Bose Gas & Sexual
Polariton Bose–Einstein Condensate at Room Temperature in an Al(Ga)N Nanowire–Dielectric Microcavity with a Spatial Potential Trap
3. Quantum Gases
Bose-Einstein Condensation of Long- Lifetime Polaritons in Thermal Equilibrium
Bose-Einstein Condensation: Analysis of Problems and Rigorous Results
Heterobilayers of 2D Materials As a Platform for Excitonic Superfluidity
Polaron Problems in Ultracold Atoms: Role of a Fermi Sea Across Different Spatial Dimensions and Quantum Fluctuations of a Bose Medium
PHYSICS 112 Homework 7 Due in Class, Tuesday Feb. 28. 1. Density of States in One Dimension Show That the Density of States
Chapter 14 Ideal Bose
Einstein Condensation in an Ultra-Hot Gas of Pumped Magnons