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A MODEL FOR DARK MATTER HALOS

机译:黑暗物质晕圈模型

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摘要

A halo model is presented that possesses a constant phase-space density (Q) core followed by a radial CDM-like power-law decrease in Q. The motivation for the core is the allowance for a possible primordial phase-space density limit such as the Tremaine-Gunn upper bound. The space density profile derived from this model has a constant-density core and falls off rapidly beyond it. The new model is shown to improve the fits to the observations of LSB galaxy rotation curves, naturally provides a model that has been shown to result in a lengthened dynamical friction timescale for the Fornax dwarf spheroidal galaxy, and predicts a flattening of the density profile within the Einstein radius of galaxy clusters. A constant gas entropy floor is predicted whose adiabatic constant provides a lower limit in accord with observed galaxy cluster values. While "observable-sized" cores are not seen in standard cold dark matter (CDM) simulations, phase-space considerations suggest that they could appear in warm dark matter (WDM) cosmological simulations and in certain hierarchically consistent SuperWIMP scenarios.
机译:提出了一个光环模型,该模型具有恒定的相空间密度(Q)核,然后在Q中出现类似径向CDM的幂律减小。该核的动机是考虑到可能的原始原始相空间密度极限,例如Tremaine-Gunn上限。从该模型得出的空间密度分布图具有恒定密度的核,并且在超出此范围后会迅速下降。新模型显示出可以改善与LSB星系旋转曲线观测值的拟合度,自然提供了一个模型,该模型可以延长Fornax矮球体星系的动态摩擦时标,并预测其中密度分布的展平星系团的爱因斯坦半径。可以预测出一个恒定的气体熵底,其绝热常数根据观测到的星系团值提供了一个下限。尽管在标准的冷暗物质(CDM)模拟中看不到“可观察尺寸”的岩心,但相空间方面的考虑表明它们可能出现在暖暗物质(WDM)宇宙学模拟以及某些层次一致的SuperWIMP方案中。

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