强相互作用稠密费米系统的动力学方程。

Pavel Lipavský, Klaus Morawetz, V. Špička
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引用次数: 45

摘要

本文综述了非相对论格林函数法求解非平衡态费米液体的动力学方程。重点是对撞间脱壳运动的一致性处理以及二元碰撞的非瞬时和非局部图像。
所得到的动力学方程是玻尔兹曼型的,它代表了金属输运理论和中等密度气体理论之间的插值。在金属中的朗道准粒子精神中,粒子的自由运动被各种平均场和质量修正重新归一化。在恩斯科格的非理想气体理论中,碰撞是非局部的。此外,碰撞是非瞬间的,这是气体理论中所没有的特征,但这对密集费米系统来说是很重要的。
尽管其形式复杂,但所提出的理论在蒙特卡罗模拟方案中具有简单的实现。给出了重离子反应在核物理中的应用,并将结果与以前的理论和最近的实验数据进行了比较。
脱壳运动和非局部和非瞬间碰撞对系统动力学的影响可以用热力学函数(如能量密度或压力张量)来表征。从两个角度推导并讨论了这些函数的非平衡对应物和相应的平衡方程。首先,它们被用来证明守恒定律。其次,阐明了各个微观机制在粒子通量和动量以及能量转换中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic equation for strongly interacting dense fermi systems.
We review the non-relativistic Green's-function approach to the kinetic equations for Fermi liquids far from equilibrium. The emphasis is on the consistent treatment of the off-shell motion between collisions and on the non-instant and non-local picture of binary collisions.
The resulting kinetic equation is of the Boltzmann type, and it represents an interpolation between the theory of transport in metals and the theory of moderately dense gases. The free motion of particles is renormalised by various mean field and mass corrections in the spirit of Landau's quasiparticles in metals. The collisions are non-local in the spirit of Enskog's theory of non-ideal gases. The collisions are moreover non-instant, a feature which is absent in the theory of gases, but which is shown to be important for dense Fermi systems.
In spite of its formal complexity, the presented theory has a simple implementation within the Monte-Carlo simulation schemes. Applications in nuclear physics are given for heavy-ion reactions and the results are compared with the former theory and recent experimental data.
The effect of the off-shell motion and the non-local and non-instant collisions on the dynamics of the system can be characterised in terms of thermodynamic functions such as the energy density or the pressure tensor. Non-equilibrium counterparts of these functions and the corresponding balance equations are derived and discussed from two points of view. Firstly, they are used to prove the conservation laws. Secondly, the role of individual microscopic mechanisms in fluxes of particles and momenta and in transformations of the energy is clarified.
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Annales De Physique
Annales De Physique 物理-物理:综合
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