论文标题

外部重力中心电势中的相空间混合

Phase space mixing in an external gravitational central potential

论文作者

Rioseco, Paola, Sarbach, Olivier

论文摘要

本文致力于研究d = 1,2,3空间尺寸中无碰撞动力气体的动力学行为,该空间尺寸被困在旋转的对称电位中。尽管在显微镜水平上,单个气体颗粒的轨迹是准周期性的,其特征在于其基本频率,但在宏观水平上,如果潜在的潜力满足一定的一定的非差异条件,则气体会及时放松到固定状态。在本文中,我们为这种放松过程提供了数学上精确的公式,这是由于相空间混合而引起的。特别是,我们证明了从一个粒子分布函数(例如粒子和能量密度,压力和应力张量)计算出的与物理相关类别的宏观可观察结果,它会及时收敛于与平均分布函数相关的相应可观察到的物体。后者可以从初始基准确定,仅取决于运动积分。因此,气体的最终状态仅取决于运动积分的有效分布函数,这大大降低了气体构型的自由度。我们讨论了对重力物理学的一些应用,包括在恒星动力学中引起的典型潜力和暗物质晕圈建模的典型潜力的传播,我们还将结果推广到相对论的气体,其单个颗粒遵循固定的时间表轨迹在静态,球形对称的黑孔的外部区域中绑定的时间表轨迹。

This article is devoted to the study of the dynamical behavior of a collisionless kinetic gas in d=1,2,3 space dimensions which is trapped in a rotationally symmetric potential well. Although at the microscopic level the trajectories of individual gas particles are quasi-periodic and characterized by their d fundamental frequencies, at the macroscopic level the gas relaxes in time to a stationary state, provided the potential satisfies a certain non-degeneracy condition. In this article, we provide a mathematically precise formulation for this relaxation process which is due to phase space mixing. In particular, we prove that a physically relevant class of macroscopic observables computed from the one-particle distribution function, such as particle and energy densities, pressure and stress tensors, converge in time to the corresponding observables associated with an averaged distribution function. The latter can be determined from the initial datum and depends only on integrals of motion. Thus, the final state of the gas is described by an effective distribution function depending only on integrals of motion, which considerably reduces the degrees of freedom of the gas configuration. We discuss some applications to gravitational physics, including the propagation of a collisionless gas in typical potentials arising in stellar dynamics and the modeling of dark matter halos, and we also generalize our results to a relativistic gas whose individual particles follow bound timelike trajectories in the exterior region of a static, spherically symmetric black hole spacetime.

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