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Narrowing the Mass Range of Fuzzy Dark Matter with Ultrafaint Dwarfs

机译:用Ultrafaint Dwarfs缩小模糊暗物质的质量范围

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摘要

Fuzzy dark matter (FDM) is an attractive dark matter candidate motivated by small-scale problems in astrophysics and with a rich phenomenology on those scales. We scrutinize the FDM model, more specifically the mass of the FDM particle, through a dynamical analysis for the Galactic ultrafaint dwarf (UFD) galaxies. We use a sample of 18 UFDs to place the strongest constraints to date on the mass of the FDM particle, updating on previous bounds using a subset of the sample used here. We find that most of the sample UFDs prefer an FDM particle mass heavier than 10(-21) eV. In particular, Segue 1 provides the strongest constraint, with m(psi) = 1.1(-0.7)(+8.3) x 10(-19) eV. The constraints found here are the first that are compatible with various other independent cosmological and astrophysical bounds found in the literature, in particular with the latest bounds using the Ly alpha forest. We also find that the constraints obtained in this work are not compatible with the bounds from luminous dwarf galaxies, as already pointed out in the previous work using UFDs. This could indicate that although a viable dark matter model, it might be challenging for the FDM model to solve the small-scale problems.
机译:模糊暗物质(FDM)是一种有吸引力的暗物质候选者,其动机是天体物理学中的小尺度问题,并在这些尺度上具有丰富的现象学。通过对银河系超微弱矮星系(UFD)的动力学分析,我们仔细研究了FDM模型,更具体地说是FDM粒子的质量。我们使用18个UFD样本对FDM粒子的质量施加迄今为止最强的约束,并使用此处使用的样本子集更新之前的边界。我们发现,大多数样品UFD更喜欢FDM粒子质量大于10(-21)eV。特别是,Segue 1提供了最强的约束,m(psi)=1.1(-0.7)(+8.3)x 10(-19)eV。这里发现的约束是第一个与文献中发现的各种其他独立的宇宙学和天体物理学边界兼容的约束,特别是与使用Ly alpha森林的最新边界兼容。我们还发现,在这项工作中获得的约束与发光矮星系的边界不兼容,正如之前使用UFD的工作中已经指出的那样。这可能表明,虽然FDM模型是一个可行的暗物质模型,但它可能对解决小规模问题具有挑战性。

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