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非平衡态下磁振子的弗罗利希-玻色-爱因斯坦凝聚的统计热力学。

Statistical thermodynamics of the Fröhlich-Bose-Einstein condensation of magnons out of equilibrium.

机构信息

São Paulo State University (UNESP), Institute of Biosciences, 11380-972 São Vicente, SP, Brazil.

Condensed Matter Physics Department, Institute of Physics "Gleb Wataghin," State University of Campinas (UNICAMP), 13083-859 Campinas, SP, Brazil.

出版信息

Phys Rev E. 2019 Sep;100(3-1):032126. doi: 10.1103/PhysRevE.100.032126.

Abstract

This work presents a nonequilibrium statistical-thermodynamic approach to the study of a Fröhlich-Bose-Einstein condensation of magnons under radio-frequency radiation pumping. Fröhlich-Bose-Einstein condensates display a complex behavior consisting in steady-state conditions to the emergence of a synergetic dissipative structure resembling the Bose-Einstein condensation of systems in equilibrium. Then a kind of "two-fluid model" arises: the "normal" nonequilibrium structure and the Fröhlich condensate, which is shown to be an attractor to the system. In this study we analyze some aspects of the irreversible thermodynamics of this dissipative complex system. We obtained the expression for the informational entropy of the two-fluid condensate and introduced an order parameter to characterize the role of the Fröhlich interaction in ordering the system. The analysis highlights the order increase due to the Fröhlich interaction. We also study the informational entropy production of the system, considering its internal and external parts. Finally, the Glansdorff-Prigogine criteria for evolution and (in)stability are verified.

摘要

本文提出了一种非平衡统计热力学方法,用于研究在射频辐射泵浦下的磁振子 Fröhlich-Bose-Einstein 凝聚。Fröhlich-Bose-Einstein 凝聚表现出一种复杂的行为,即在稳态条件下出现协同耗散结构,类似于平衡系统中的玻色-爱因斯坦凝聚。然后出现了一种“双流体模型”:“正常”的非平衡结构和 Fröhlich 凝聚,它被证明是系统的吸引子。在这项研究中,我们分析了这个耗散复杂系统的不可逆热力学的一些方面。我们得到了双流体凝聚的信息熵表达式,并引入了一个序参量来表征 Fröhlich 相互作用在系统有序化中的作用。分析强调了由于 Fröhlich 相互作用导致的序增加。我们还研究了系统的信息熵产生,考虑了其内部和外部部分。最后,验证了 Glansdorff-Prigogine 准则对于演化和(不)稳定性的适用性。

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