Thermodynamic properties of rotating trapped ideal Bose gases
Quantum Gases
2022-03-23 v1
Abstract
Ultracold atomic gases can be spined up either by confining them in rotating frame, or by introducing ``synthetic" magnetic field. In this paper, thermodynamics of rotating ideal Bose gases are investigated within truncated-summation approach which keeps to take into account the discrete nature of energy levels, rather than to approximate the summation over single-particle energy levels by an integral as does in semi-classical approximation. Our results show that Bose gases in rotating frame exhibit much stronger dependence on rotation frequency than those in ``synthetic" magnetic field. Consequently, BEC can be more easily suppressed in rotating frame than in ``synthetic" magnetic field.
Keywords
Cite
@article{arxiv.1402.7220,
title = {Thermodynamic properties of rotating trapped ideal Bose gases},
author = {Yushan Li and Qiang Gu},
journal= {arXiv preprint arXiv:1402.7220},
year = {2022}
}
Comments
7 pages, 9 figures