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Boundary and particle number effects on the thermodynamic properties of trapped ideal Bose gases

机译:边界和粒子数对捕获的理想玻色气体的热力学性质的影响

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摘要

The ideal noninteracting Bose gases trapped in a generic power-law potential in an any-dimensional space are studied. We present theoretical results of the corrections of thermodynamic properties due to finite particle number effects. The calculation uses the Euler-Maclaurin approximation to simplify the condensate fraction, and it also uses the Maslov index to discuss the boundary effect. Recently BEC (Bose-Einstein Condensation) has also been observed in a microelectronic chip; therefore, with a similar microstructure, we can obtain the effects of a rigid wall in a trap that have never been found before.
机译:研究了在任意空间中以一般幂律势捕获的理想非相互作用玻色气体。由于有限的粒子数效应,我们提出了热力学性质校正的理论结果。该计算使用Euler-Maclaurin逼近来简化冷凝水馏分,并且还使用Maslov指数讨论边界效应。最近,在微电子芯片中也观察到了BEC(玻色-爱因斯坦凝聚)。因此,通过类似的微观结构,我们可以获得陷阱中从未有过的刚性壁的效果。

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