首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Are the most super-massive dark compact objects harbored at the center of dark matter halos?
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Are the most super-massive dark compact objects harbored at the center of dark matter halos?

机译:暗物质晕圈的中心是否藏有最超质量的深色致密物体?

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摘要

We study an isothermal system of semi-degenerate self-gravitating fermions in general relativity (GR). The most general solutions present is mass density profiles with a central degenerate compact core governed by quantum statistics followed by an extended plateau, and ending in a power law behavior r(-2). By fixing the fermion mass m in the keV regime, the different solutions depending on the free parameters of the model: the degeneracy and temperature parameters at the center, are systematically constructed along the one-parameter sequences of equilibrium configurations up to the critical point, which is represented by the maximum in a central density (rho 0) versus core mass (M-c) diagram. We show that for fully degenerate cores, the Oppenheimer-Volkoff (OV) mass limit M-c(cr) proportional to M-pl(3)/m(2) is obtained, while instead for low degenerate cores, the critical core mass increases showing the temperature effects in a nonlinear way. The main result of this work is that when applying this theory to model the distribution of dark matter (DM) in big elliptical galaxies from miliparsec distance-scales up to 10(2) Kpc, we do not find any critical core-halo configuration of self-gravitating fermions, able to explain both the most super-massive dark object at their center together with the DM halo simultaneously.
机译:我们在广义相对论中研究了半简自重费米子的等温系统。当前最通用的解决方案是质量密度分布图,其中心退化简并核由量子统计控制,随后是平稳平台,并以幂律行为r(-2)结尾。通过将费米子质量m固定在keV体制中,根据模型的自由参数,沿着平衡构型的一参数序列直至临界点,系统地构建了基于模型自由参数的不同解:中心的简并性和温度参数,它由中心密度(rho 0)对核心质量(Mc)图中的最大值表示。我们显示,对于完全退化的岩心,获得了与M-pl(3)/ m(2)成比例的Oppenheimer-Volkoff(OV)质量极限Mc(cr),而对于低退化的岩心,临界岩心质量增加了温度以非线性方式影响。这项工作的主要结果是,当运用这一理论来模拟大椭圆星系中的暗物质(DM)的分布(距离范围达10(2)Kpc)时,我们没有发现任何关键的核-晕结构。自引力费米子,能够同时解释中心最重的暗物体和DM光晕。

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