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PAPER: Quantum statistical physics, condensed matter, integrable systems Canonical partition functions: ideal quantum gases, interacting classical gases, and interacting quantum gases

机译:纸质:量子统计物理,凝聚态,可排水系统规范分区功能:理想量子气体,相互作用古典气体,以及相互作用的量子气体

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摘要

In statistical mechanics, for a system with a fixed number of particles, e.g. a finite-size system, strictly speaking, the thermodynamic quantity needs to be calculated in the canonical ensemble. Nevertheless, the calculation of the canonical partition function is difficult. In this paper, based on the mathematical theory of the symmetric function, we suggest a method for the calculation of the canonical partition function of ideal quantum gases, including ideal Bose, Fermi, and Gentile gases. Moreover, we express the canonical partition functions of interacting classical and quantum gases given by the classical and quantum cluster expansion methods in terms of the Bell polynomial in mathematics. The virial coefficients of ideal Bose, Fermi, and Gentile gases are calculated from the exact canonical partition function. The virial coefficients of interacting classical and quantum gases are calculated from the canonical partition function by using the expansion of the Bell polynomial, rather than calculated from the grand canonical potential.
机译:在统计力学中,对于具有固定数量的粒子的系统,例如,有限尺寸的系统严格来说,需要在规范集合中计算热力学量。然而,规范分区功能的计算是困难的。本文基于对称函数的数学理论,我们建议一种计算理想量子气体的规范分区功能的方法,包括理想的Bose,费米和外凸气体。此外,我们表达了在数学中的钟多项式方面通过经典和量子集群扩展方法给出的经典和量子气体的典型分配功能。根据精确的规范分配功能计算理想培养,费米和外凸气体的病毒系数。通过使用钟多项式的膨胀来计算相互作用经典和量子气体的病毒系数,而不是从大规范电位计算。

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