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Testing Cold Dark Matter with the Low-Mass Tully-Fisher Relation

机译:用低质量塔利菲舍尔关系测试冷暗物质

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In most cosmological theories, the galaxy mass function at small masses is related to the small-scale matter power spectrum. The circular velocity function (closely related to the mass function) is well studied for Local Group dwarfs. However, predictions and measurements are difficult for satellite galaxies because of ram pressure and tidal stripping. By contrast, isolated dwarf galaxies are less affected by these processes and almost always have 21 cm emission to trace their dynamics. Here we use isolated low-mass dwarf galaxies from the SDSS, with measured 21 cm widths, to test CDM cosmology. We find consistency between the predicted and observed number density of isolated galaxies down to Vmax ~ 50 km s?1. Our technique yields a direct test of small-scale cosmology that is independent of but weaker than the Lyα forest: warm dark matter particles heavier than 0.5 keV cannot be ruled out (for the case of thermal gravitinos). New, blind H I surveys are expected to uncover a much larger number of isolated low-mass galaxies and will increase the power of our constraints at small scales. Using our sample, we also find that the Tully-Fisher relation for dwarfs is a strong function of environment, and that the baryon fraction is only a weak function of galaxy mass. Together with the strong dependence of gas fraction on environment, these results indicate that for dwarf galaxies, gas loss and the end of star formation are dominated by external, not internal, processes.
机译:在大多数宇宙学理论中,小质量的星系质量函数与小尺度物质功率谱有关。对局部群矮星的圆速度函数(与质量函数密切相关)进行了很好的研究。但是,由于冲压压力和潮汐剥离,对卫星星系很难进行预测和测量。相比之下,孤立的矮星系受这些过程影响较小,并且几乎总是发射21厘米的辐射来追踪其动力学。在这里,我们使用来自SDSS的孤立的低质量矮星系,测量出21厘米的宽度,以测试CDM宇宙学。我们发现低至Vmax〜50 km s?1的孤立星系的预测密度和观测数密度之间具有一致性。我们的技术对小宇宙学进行了直接测试,该实验独立于Lya森林,但比Lyα森林要弱:不能排除重于0.5 keV的温暖暗物质粒子(对于热引力子而言)。新的盲目H I调查预计将发现大量孤立的低质量星系,并将在小范围内增加我们的约束力。使用我们的样本,我们还发现矮人的Tully-Fisher关系是环境的强函数,而重子分数只是星系质量的弱函数。这些结果连同气体分数对环境的强烈依赖性一起表明,对于矮星系而言,气体损失和恒星形成的结束主要由外部而非内部过程决定。

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