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Thermodynamic properties of rotating trapped ideal Bose gases

机译:旋转捕获的理想玻色气体的热力学性质

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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 it 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.
机译:通过将超冷原子气体限制在旋转框架中或引入“合成”磁场,可以使超冷原子气体旋转。在本文中,在截断求和方法中研究了理想的旋转Bose气体的热力学,该方法始终考虑能级的离散性质,而不是像半个子一样通过积分近似求得单粒子能级的总和。 -经典近似。我们的结果表明,旋转框架中的玻色气体比“合成”磁场中的气体对旋转频率的依赖性强得多。因此,在旋转框架中比在“合成”磁场中更容易抑制BEC。

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