English

Relaxation processes in one-dimensional self-gravitating many-body systems

Astrophysics 2009-10-28 v1

Abstract

Though one dimensional self-gravitating NN-body systems have been studied for three decade, the nature of relaxation was still unclear. There were inconsistent results about relaxation time; some initial state relaxed in the time scale TNtcT\sim N\,t_c, but another state did not relax even after TN2tcT\sim N^2\,t_c, where tct_c is the crossing time. The water-bag distribution was believed not to relax after TN2tcT\sim N^2\,t_c. In our previous paper, however, we found there are two different relaxation times in the water-bag distribution;in the faster relaxation ( microscopic relaxation ) the equipartition of energy distribution is attains but the macroscopic distribution turns into the isothermal distribution in the later relaxation (macroscopic relaxation). In this paper, we investigated the properties of the two relaxation. We found that the microscopic relaxation time is TNtcT\sim N\,t_c, and the macroscopic relaxation time is proportional to NtcN\,t_c, thus the water-bag does relax. We can see the inconsistency about the relaxation times is resolved as that we see the two different aspect of relaxations. Further, the physical mechanisms of the relaxations are presented.

Keywords

Cite

@article{arxiv.astro-ph/9506018,
  title  = {Relaxation processes in one-dimensional self-gravitating many-body systems},
  author = {Toshio Tsuchiya and Naoteru Gouda and Tetsuro Konishi},
  journal= {arXiv preprint arXiv:astro-ph/9506018},
  year   = {2009}
}

Comments

11 pages, uuencoded, compressed Postscript, no figure, figures available at ftp://ferio.mtk.nao.ac.jp/pub/tsuchiya/Tsuchiya95.tar.gz

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