困在一般幂律势中的理想玻色气体的卡西米尔效应

T. Lin, G. Su, Q. Wang, Jincan Chen
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引用次数: 5

摘要

系统地研究了被困在一般幂律势中的理想玻色气体的卡西米尔效应,并在具有狄利克雷、诺伊曼和周期边界条件的两个平板之间,基于理想玻色气体的大势,计算了卡西米尔势和力。得到了标度函数,并进行了讨论。讨论了自由势和谐波势的特殊情况。发现当T≤Tc(其中Tc为玻色-爱因斯坦凝聚的临界温度)时,卡西米尔力是幂律衰减函数;当T>Tc时,卡西米尔力为指数衰减函数;当T≠Tc时,卡西米尔力消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Casimir effect of an ideal Bose gas trapped in a generic power-law potential
The Casimir effect of an ideal Bose gas trapped in a generic power-law potential and confined between two slabs with Dirichlet, Neumann, and periodic boundary conditions is investigated systematically, based on the grand potential of the ideal Bose gas, the Casimir potential and force are calculated. The scaling function is obtained and discussed. The special cases of free and harmonic potentials are also discussed. It is found that when T⩽Tc (where Tc is the critical temperature of Bose-Einstein condensation), the Casimir force is a power-law decay function; when T>Tc, the Casimir force is an exponential decay function; and when T≫Tc, the Casimir force vanishes.
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