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Cosmological evolution of statistical system of scalar charged particles

机译:标量带电粒子统计系统的宇宙论演变

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In the paper we consider the macroscopic model of plasma of scalar charged particles, obtained by means of the statistical averaging of the microscopic equations of particle dynamics in a scalar field. On the basis of kinetic equations, obtained from averaging, and their strict integral consequences, a self-consistent set of equations is formulated which describes the self-gravitating plasma of scalar charged particles. It was obtained the corresponding closed cosmological model which also was numerically simulated for the case of one-component degenerated Fermi gas and two-component Boltzmann system. It was shown that results depend weakly on the choice of a statistical model. Two specific features of cosmological evolution of a statistical system of scalar charged particles were obtained with respect to cosmological evolution of the minimal interaction models: appearance of giant bursts of invariant cosmological acceleration Omega at the time interval 8 . 10(3)-2 . 10(4) t(Pl) and strong heating (3-8 orders of magnitude) of a statistical system at the same times. The presence of such features can modify the quantum theory of generation of cosmological gravitational perturbations.
机译:在本文中,我们考虑逐级带电粒子等离子体的宏观模型,通过标量场中的粒子动力学的微观方程的统计平均来获得。在从平均值获得的动力学方程的基础上,以及它们严格的整体后果,配制了一种自我一致的方程,其描述了标量带电粒子的自重倾泻等离子体。获得了相应的闭合宇宙学模型,其对于单组分退化的费米气体和双组分Boltzmann系统的情况进行了数值模拟的。结果表明,结果缺乏对统计模型的选择。相对于最小相互作用模型的宇宙学演变获得了标量带电粒子统计系统的两个具体特征:在时间间隔8处的不变宇宙学加速ω的巨大突发的外观。 10(3)-2。 10(4)T(PL)在同一时间的统计系统的强化加热(3-8级)。这种特征的存在可以改变宇宙学重力扰动产生量子理论。

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