Thermodynamics of random walking vortex loops in counterflowing superfluids

Sergey K. Nemirovskii
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Abstract

Based on the theory of the thermodynamic equilibrium in a system of quantum vortices in superfluids in the presence of a counterflow, the influence of a vortex tangle on various thermodynamic phenomena in quantum liquids is studied. Using the early calculated partition function we study some of the properties of He II related to counterflow, such as the distribution of vortex loops in their length, the suppression of the superfluid density $\rho _{s}$ and the shift $T_{\lambda}$. Good agreement with the early obtained results is a fairly strong argument in favor of the point of view that the gas of string-like topological excitations can indeed be considered as a additional kind of quasi-particles having the inner structure at high temperatures, especially near the phase transition. The application of the developed formalism to the theory of quantum turbulence is briefly discussed.
逆流超流体中随机行走涡旋环的热力学
利用早期计算的分区函数,我们研究了与逆流有关的He II的一些性质,如涡旋环在其长度内的分布、超流体密度$\rho _{s}$的抑制和位移$T_{\lambda}$。与早期得到的结果的良好一致性是一个相当有力的论据,它支持这样一种观点,即弦-基拓扑激元气体确实可以被视为在高温下,特别是在相变附近,具有内部结构的另一种准粒子。本文简要讨论了所建立的形式主义在量子湍流理论中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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