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Correlational latent heat by nonlocal quantum kinetic theory

机译:非局部量子动力学理论的相关潜热

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摘要

A kinetic equation of nonlocal and noninstantaneous character unities the achievements of transport in dense quantum gases with the Landau theory of quasiclassical transport in Fermi systems. Large cancellations in the off-shell motion appear, which are usually hidden in non-Markovian behaviors. The remaining corrections are expressed in terms of shifts in space and time that characterize the nonlocality of the scattering process. In this way, it is possible to recast quantum transport into a quasiclassical picture. In addition to the quasiparticle, the balance equations for density, momentum, energy, and entropy also include correlated two-particle contributions beyond the Landau theory. The medium effects on binary collisions are shown to mediate the latent heat, i.e.. an energy conversion between correlation and thermal energy. For Maxwellian particles with time-dependent .v-wave scattering, the correlated parts of the observables are calculated and a sign change of the latent heat is reported at a universal ratio of scattering length to the thermal de Broglie wavelength. This is interpreted as a change from correlational heating to cooling.
机译:非局部和非瞬时特性的动力学方程将密量子气体中的输运成就与费米系统中准经典输运的Landau理论结合在一起。出现壳外运动中的大抵消,这些抵消通常隐藏在非马尔可夫行为中。其余的校正是根据空间和时间的变化来表示的,这些变化是散射过程的非局部性的特征。这样,可以将量子传输重铸为准经典图像。除了准粒子之外,密度,动量,能量和熵的平衡方程还包括相关的两粒子贡献,这超出了Landau理论。显示出对二元碰撞的中等影响介导潜热,即相关性和热能之间的能量转换。对于具有随时间变化的v波散射的麦克斯韦粒子,计算出了可观测部分的相关部分,并以散射长度与热德布罗意波长的通用比率报告了潜热的符号变化。这被解释为从相关加热到冷却的变化。

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  • 来源
    《Physical review》 |2018年第19期|195142.1-195142.6|共6页
  • 作者

    K. Morawetz;

  • 作者单位

    Muenster University of Applied Sciences, Stegerwaldstrasse 39, 48565 Steinfurt, Germany,International Institute of Physics - UFRN, Campus Universitario Lagoa nova, 59078-970 Natal, Brazil,Max-Planck-Institute for the Physics of Complex Systems, 01187 Dresden, Germany;

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