用费米- lat观测超精密致密恒星系统来评估约束暗物质湮灭的潜力

Antonio Circiello, Alex McDaniel, Alex Drlica-Wagner, Christopher Karwin, Marco Ajello, Mattia Di Mauro and Miguel Á. Sánchez-Conde
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摘要

最近的数值模拟和星系形成模型的结果表明,最近在银河系晕(MW)中发现的超致密恒星系统(UFCSs)可能是一些最小和最微弱的星系。如果是这样的话,这些系统将是间接搜索弱相互作用大质量粒子暗物质湮灭的有吸引力的目标,因为它们的相对接近和高预期的暗物质含量。在这项研究中,我们分析了由费米大面积望远镜收集的与26个ufcs一致的14.3年的γ射线数据。没有检测到明显的过量γ射线发射,我们提出了这些系统的γ射线通量上限。假设ufcs是DM主导的星系,与最微弱和质量最小的MW矮球(dSph)卫星星系一致,我们推导了DM湮灭信号的投影灵敏度。我们发现,对ufcs的观测有可能产生一些最强大的DM湮灭约束,其灵敏度可与已知的dsph和银河系中心的观测相媲美。这一结果强调了对ufcs进行精确运动学研究以经验确定其DM含量的重要性。
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Evaluating the Potential to Constrain Dark Matter Annihilation with Fermi-LAT Observations of Ultrafaint Compact Stellar Systems
Recent results from numerical simulations and models of galaxy formation suggest that recently discovered ultrafaint compact stellar systems (UFCSs) in the halo of the Milky Way (MW) may be some of the smallest and faintest galaxies. If this is the case, these systems would be attractive targets for indirect searches of weakly interacting massive particle dark matter (DM) annihilation due to their relative proximity and high expected DM content. In this study, we analyze 14.3 yr of γ-ray data collected by the Fermi-Large Area Telescope coincident with 26 UFCSs. No significant excess γ-ray emission is detected, and we present γ-ray flux upper limits for these systems. Assuming that the UFCSs are DM-dominated galaxies consistent with being among the faintest and least massive MW dwarf spheroidal (dSph) satellite galaxies, we derive the projected sensitivity for a DM annihilation signal. We find that observations of UFCSs have the potential to yield some of the most powerful constraints on DM annihilation, with sensitivity comparable to observations of known dSphs and the Galactic center. This result emphasizes the importance of precise kinematic studies of UFCSs to empirically determine their DM content.
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