Cosmological particle production and casual thermodynamics

M. Mak, T. Harko
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引用次数: 18

Abstract

The full linear causal Israel–Stewart–Hiscock theory of bulk viscous processes in relativistic cosmological fluids is reformulated as an effective phenomenological theory for describing particle production processes in the early universe. Explicit expressions for the particle balance law and particle production rates are obtained that relate the particle creation rate to the bulk viscous (creation) pressure. The general formalism is applied to the case of a full causal cosmological fluid with bulk viscosity coecient proportional to the Hubble function. In this case the general solution of the gravitational field equations can be expressed in an exact parametric form. For an appropriate choice of the physical parameters, the dynamics of the universe can be modelled as starting from a vacuum quasi-Minkowskian geometry, followed by an inflationary period but ending in a non-inflationary phase. The influence of the matter creation processes on the evolution of the universe and the behaviour of the energy density, temperature and entropy are investigated.
宇宙粒子的产生和偶然的热力学
相对论宇宙学流体中体积粘性过程的完全线性因果Israel-Stewart-Hiscock理论被重新表述为描述早期宇宙中粒子产生过程的有效现象学理论。得到了颗粒平衡定律和颗粒生成速率的显式表达式,该表达式将颗粒生成速率与体粘性(生成)压力联系起来。将一般形式应用于体积黏度系数与哈勃函数成正比的完全因果宇宙学流体的情况。在这种情况下,引力场方程的通解可以用精确的参数形式表示。对于物理参数的适当选择,宇宙的动力学可以建模为从真空准闵可夫斯基几何开始,随后是暴胀期,但在非暴胀阶段结束。研究了物质产生过程对宇宙演化的影响以及能量密度、温度和熵的行为。
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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