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首页> 外文期刊>Journal of Low Temperature Physics >Thermodynamic Anomalies of Small Quantum Systems Within a New Approach to Statistical Physics
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Thermodynamic Anomalies of Small Quantum Systems Within a New Approach to Statistical Physics

机译:统计物理新方法内的小量子系统热力学异常

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Based on a new statistical theory, we investigate the thermodynamic anomalies of small quantum systems, such as the negative specific heat (NSH) and negative entropy (NE) within the generalized canonical ensemble. We consider the system-bath heat exchange and "uncompensated heat" in the thermodynamical level which is independent on the details of the system-bath coupling. For ideal finite systems, we calculate two thermodynamic quantities, i.e., the experimental specific heat and the entropy. The results show that the NSH and NE exist in quantum thermodynamics, particularly at low temperatures for small systems. They agree with the results of the reduced partition function theory and reveal that the finite boundary effects of the uncompensated heat and heat exchange of small quantum systems dominate the nonequilibrium irreversible processes.
机译:基于新的统计理论,我们研究了小量子系统的热力学异常,例如广义规范集合中的负比热(NSH)和负熵(NE)。我们在热力学水平上考虑系统浴的热交换和“未补偿的热”,这与系统浴耦合的细节无关。对于理想的有限系统,我们计算两个热力学量,即实验比热和熵。结果表明,NSH和NE存在于量子热力学中,特别是在小型系统的低温下。他们与简化的分配函数理论的结果一致,并揭示了未补偿的热和小量子系统的热交换的有限边界效应主导了非平衡不可逆过程。

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