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Thermosize effects in a q-deformed fermion gas model

机译:在Q变形的FERMION气体模型中的热敏效应

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We study the the high-temperature thermodynamic properties of the q-deformed fermion gas model by taking into account of the size effect of the gas particles. Starting from the logarithm of the grand partition function of the model, we calculate several thermodynamic functions of the model such as internal energy, entropy, and Helmholtz free energy by means of the deformation parameter q. Furthermore, the influences of the fermionic q-deformation on the thermosize effect in the confined deformed quantum gas systems such as the Seebeck-like and Peltier-like thermosize effects are discussed. Especially, we focus on the absorbed or released heat of the model in the Peltier-like thermosize effect. In the light of the results obtained in this work, we can conclude that the present q-deformed fermion model can be used to desing the new types of the micro-/nano-scaled quantum heat engines.
机译:我们通过考虑气体颗粒的尺寸效应来研究Q变形的FERMION气体模型的高温热力学性质。 从模型的大分区功能的对数开始,我们通过变形参数Q计算诸如内部能量,熵和Helmholtz自由能的若干热力学功能。 此外,讨论了诸如塞贝克样和珀耳帖样热敏效应的狭窄的变形量子气体系统中的热焦Q变形对狭窄的变形量子气体系统中的热敏效果的影响。 特别是,我们专注于珀耳帖样热敏效果中的模型的吸收或释放的热量。 鉴于在该工作中获得的结果,我们可以得出结论,本发明的Q变形的FEREMION模型可用于消除新型的微/纳米缩放量子热动发动机。

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