Introduction to the Modern Theory of Bose-Einstein Condensation, Superfluidity, and Superconductivity

Fuente: arXiv
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1. Verfasser: Attard, Phil
Format: Preprint
Veröffentlicht: 2025
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author Attard, Phil
author_facet Attard, Phil
contents The modern theory of Bose-Einstein condensation, superfluidity, and superconductivity is reviewed. The thermodynamic principle for superfluid flow and the equation of motion for condensed bosons are given. Computer simulations of Lennard-Jones $^4$He give the $λ$-transition and the superfluid viscosity. The statistical mechanical theory of high-temperature superconductivity is presented. Critical comparison is made with older approaches, such as ground energy state condensation, irrotational superfluid flow, and the macroscopic wavefunction.
format Preprint
id arxiv_https___arxiv_org_abs_2511_08953
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Introduction to the Modern Theory of Bose-Einstein Condensation, Superfluidity, and Superconductivity
Attard, Phil
Statistical Mechanics
Quantum Gases
Superconductivity
Chemical Physics
Quantum Physics
The modern theory of Bose-Einstein condensation, superfluidity, and superconductivity is reviewed. The thermodynamic principle for superfluid flow and the equation of motion for condensed bosons are given. Computer simulations of Lennard-Jones $^4$He give the $λ$-transition and the superfluid viscosity. The statistical mechanical theory of high-temperature superconductivity is presented. Critical comparison is made with older approaches, such as ground energy state condensation, irrotational superfluid flow, and the macroscopic wavefunction.
title Introduction to the Modern Theory of Bose-Einstein Condensation, Superfluidity, and Superconductivity
topic Statistical Mechanics
Quantum Gases
Superconductivity
Chemical Physics
Quantum Physics
url https://arxiv.org/abs/2511.08953