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Prospects for annihilating Dark Matter towards Milky Way's dwarf galaxies by the Cherenkov Telescope Array

机译:切伦科夫望远镜阵列消灭暗物质对银河系矮星系的前景

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摘要

We derive the Cherenkov Telescope Array (CTA) sensitivity to dark matter (DM) annihilation in several primary channels, over a broad range of DM masses. These sensitivities are estimated when CTA is pointed towards a large sample of Milky Way's dwarf spheroidal galaxies (dSphs) with promising J-factors and small statistical uncertainties. This analysis neglects systematic uncertainties, which we estimate at the level of at least 1 dex. We also present sensitivities on the annihilation cross section from a combined analysis of 4 dSphs. We assess the CTA sensitivity by: i) using, for each dSph, a recent determination of the J-factor and its statistical error; ii) considering the most up-to-date cosmic ray background; and iii) including both spatial and spectral terms in the likelihood analysis. We find that a joint spectral and spatial analysis improves the CTA sensitivity, in particular for primary channels with sharp features in the gamma-ray energy spectrum and for dSphs with steep J-factor pro files, as deduced from the internal kinematics. The greatest sensitivities are obtained for observations of Ursa Minor among the classical dSphs and of Ursa Minor II for ultrafaint dSphs.
机译:我们推导了Cherenkov望远镜阵列(CTA)在广泛的DM质量范围内对几个主要通道中暗物质(DM)ni灭的敏感性。当CTA指向银河系的矮球状星系(dSphs)的大样本且J因子有希望且统计不确定性较小时,就可以估算出这些敏感性。该分析忽略了系统的不确定性,我们估计至少存在1 dex的水平。我们还从4 dSphs的组合分析中得出了hil灭截面的敏感性。我们通过以下方式评估CTA敏感性:i)对每个dSph使用J因子及其统计误差的最新确定; ii)考虑最新的宇宙射线背景; iii)在可能性分析中包括空间和频谱项。我们发现,联合频谱和空间分析可以提高CTA灵敏度,尤其是对于内部运动学推论的伽玛射线能量谱中具有明显特征的主要通道以及具有陡峭J因子特性档的dSph。对于经典dSphs中的Ursa Minor和超微弱dSphs的Ursa Minor II观测,可获得最大的灵敏度。

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