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Detactability of Dark Matter Subhalos by Means of the GAMMA-400 Telescope

机译:通过Gamma-400望远镜通过γ-400遮蔽的腐蚀性

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摘要

The potential of the planned GAMMA-400 gamma-ray telescope for detecting subhalos of mass between 10_(6) M ~(⊙)and 10_(9) M ~(⊙)in the Milky Way Galaxy that consist of annihilating dark matter in the form of weakly interacting massive particles (WIMPs) is studied. The inner structure of dark matter subhalos and their distribution in the Milky Way Galaxy are obtained on the basis of respective theoretical models. Our present analysis shows that the expected gamma-ray flux from subhalos depends strongly on the WIMP mass and on the subhalo concentration, but that it depends less strongly on the subhalo mass. Optimistically, a flux of 10 to 100 ph per year in the energy range above 100 MeV can be expected from the closest and most massive subhalos, which can therefore be thought to be detectable sources for GAMMA-400. Because of the smallness of fluxes, however, only via a joint analysis of future GAMMA-400 data and data from other telescopes would it become possible to resolve the inner structure of the subhalos. Also, the recent subhalo candidates 3FGL J2212.5+0703 and J1924.8–1034 are considered within our model. Our conclusion is that these sources hardly belong to the subhalo population.
机译:有计划的伽马-400伽马射线望远镜的潜力,用于检测10_(6)m〜(⊙)和10_(9)m〜(⊙)的质量的底座,其中包括湮灭暗物质的银河系研究了弱相互作用的巨大颗粒(WIMPS)的形式。基于各自的理论模型获得了暗物质Subhalos的内部结构及其在银河系中的分布。我们的目前的分析表明,来自Subhalos的预期伽马射线通量强烈依赖于WIMP质量和次卤浓度,但它在亚卤素质量上不太强烈地取决于强烈的。乐观地,可以从最接近的和最巨大的Subhalos预期100 meV以上的能量范围内每年10至100 pH的助焊剂,因此可以认为可以被认为是伽马400的可检测来源。然而,由于助熔剂的小,只能通过对未来的Gamma-400数据和来自其他望远镜的数据的联合分析,可以解决Subhalos的内部结构。此外,最近的Subhalo候选3FGL J2212.5 + 0703和J1924.8-1034被认为是我们的模型中。我们的结论是,这些来源几乎没有属于亚哈洛人口。

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