A core-halo pattern of entropy creation in gravitational collapse
Abstract
This paper presents a kinetic theory model of gravitational collapse due to a small perturbation. Solving the relevant equations yields a pattern of entropy destruction in a spherical core around the perturbation, and entropy creation in a surrounding halo. This indicates collisional "de-relaxation" in the core, and collisional relaxation in the halo. Core-halo patterns are ubiquitous in the astrophysics of gravitational collapse, and are found here without any of the prior assumptions of such a pattern usually made in analytical models. Motivated by this analysis, the paper outlines a possible scheme for identifying structure formation in a set of observations or a simulation. This scheme involves a choice of coarse-graining scale appropriate to the structure under consideration, and might aid exploration of hierarchical structure formation, supplementing the usual density-based methods for highlighting astrophysical and cosmological structure at various scales.
Keywords
Cite
@article{arxiv.1706.03487,
title = {A core-halo pattern of entropy creation in gravitational collapse},
author = {Andrew J. Wren},
journal= {arXiv preprint arXiv:1706.03487},
year = {2018}
}
Comments
29 pages, 6 figures, 1 table. Mathematica notebooks available from Github at https://github.com/AndrewWren/Entropy-and-gravitational-collapse-2018 Version 4 essentially as published in MNRAS