论文标题

Fermi-Lat所见,黑暗Subhalos的空间扩展以及对WIMP约束的影响

Spatial extension of dark subhalos as seen by Fermi-LAT and implications for WIMP constraints

论文作者

Coronado-Blazquez, J., Sanchez-Conde, M., Perez-Romero, J., Aguirre-Santaella, A.

论文摘要

在伽马射线搜索深色银河系苏巴洛斯(Subhalos)的伽马射线搜索中,空间扩展被称为“吸烟枪”,这将是伽马射线望远镜的身份不明的来源。在这项工作中,我们使用基于逼真的天空模型的模拟数据来研究费米 - 拉特对扩展Subhalos的敏感性。我们为一组代表性的Subhalos模拟空间模板,其参数源自我们先前使用N体宇宙学模拟数据的工作。我们发现,检测到延长的次荷兰并找到一个明确的角延伸信号所需的磁通量分别比点状源大2至10倍。通过研究大型模型网格,其中诸如WIMP质量,歼灭通道或Subhalo模型之类的参数变化很大,我们获得了LAT的响应,这是an灭横截面乘积的函数J-factor的量。确实,我们表明,空间扩展可以用作拒绝未识别的LAT来源中的Subhalos候选者的附加过滤器,以及用于积极识别的“吸烟枪”。例如,预期在考虑的情况下,预计将有十分之几的典型角度扩展。最后,我们还研究了所获得的延长Subhalos对可实现的暗物质约束的影响的影响,这比可比点源限制的约束少了几倍。

Spatial extension has been hailed as a "smoking gun" in the gamma-ray search of dark galactic subhalos, which would appear as unidentified sources for gamma-ray telescopes. In this work, we study the sensitivity of the Fermi-LAT to extended subhalos using simulated data based on a realistic sky model. We simulate spatial templates for a set of representative subhalos, whose parameters were derived from our previous work with N-body cosmological simulation data. We find that detecting an extended subhalo and finding an unequivocal signal of angular extension requires, respectively, a flux 2 to 10 times larger than in the case of a point-like source. By studying a large grid of models, where parameters such as the WIMP mass, annihilation channel or subhalo model are varied significantly, we obtain the response of the LAT as a function of the product of annihilation cross section times the J-factor. Indeed, we show that spatial extension can be used as an additional filter to reject subhalos candidates among the pool of unidentified LAT sources, as well as a "smoking gun" for positive identification. For instance, typical angular extensions of a few tenths of degree are expected for the considered scenarios. Finally, we also study the impact of the obtained LAT sensitivity to such extended subhalos on the achievable dark matter constraints, which are a few times less constraining than comparable point-source limits.

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