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Joule-Thomson coefficients of weakly interacting Fermi gases and Bose gases

机译:弱相互作用的费米气体和玻色气体的焦耳-汤姆森系数

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摘要

The analytical expressions of the Joule-Thomson coefficient (JTC) for an imperfect Fermi gas and a Bose gas are derived by means of thermodynamic theory and "pseudopotential" method, respectively. It is discussed that the influence of the Joule-Thomson effect by repulsive interacting and attractive interacting. We find the following results: (1) For an ideal Fermi gas, the JTC is lower than zero owing to the equivalent repulsive potential arising from the quantum degeneracy at sufficiently low temperature; for repulsive interaction Fermi gases, the JTC is lower than zero at sufficiently low temperature; for attractive interaction Fermi gases, there is an inversion particle density at sufficiently low temperature, when the particle density is not only higher than the inversion density, but also lower than the boundary particle density of the criterion of the stability of the Fermi system, the JTC is higher than zero; when the particle density is lower than the inversion density, the JTC is lower than zero. (2) The JTC for an ideal Bose gas is the limit of the JTC of an imperfect Bose gas when S wave scattering length is zero; for repulsive interaction Bose gases, there is an inversion particle density at certain temperature, when the particle density is lower (higher) than the inversion density, the JTC is positive (negative): for attractive interaction Bose gases, the JTC is always positive. (c) 2006 Elsevier B.V. All rights reserved.
机译:不完全费米气体和玻色气体的焦耳-汤姆森系数(JTC)的解析表达式分别通过热力学理论和“伪电势”方法得出。讨论了焦耳-汤姆森效应的排斥相互作用和吸引相互作用的影响。我们发现以下结果:(1)对于理想的费米气体,由于在足够低的温度下量子简并产生的等效排斥势,JTC低于零;对于排斥相互作用的费米气体,在足够低的温度下JTC小于零;对于费米气体的有吸引力的相互作用,在足够低的温度下存在一个反演粒子密度,当粒子密度不仅高于反演密度,还低于费米系统稳定性判据的边界粒子密度时, JTC大于零;当粒子密度低于反转密度时,JTC小于零。 (2)理想的玻色气体的JTC是当S波散射长度为零时不完全的玻色气体的JTC的极限。对于排斥相互作用的玻色气体,在一定温度下存在一个反转颗粒密度,当颗粒密度低于(高于)转化密度时,JTC为正(负):对于有吸引力的相互作用的玻色气体,JTC始终为正。 (c)2006 Elsevier B.V.保留所有权利。

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