论文标题

搜索使用Fermi大面积望远镜的伽马射线射击中的暗物质签名

Search for dark matter signatures in the gamma-ray emission towards the Sun with the Fermi Large Area Telescope

论文作者

Mazziotta, M. N., Loparco, F., Serini, D., Cuoco, A., Luque, P. De La Torre, Gargano, F., Gustafsson, M.

论文摘要

来自银河光环的暗物质颗粒可能会被重力捕获在太阳核心或外轨道中。太阳芯或外轨道中的暗物质颗粒的密度增强可能会导致这些颗粒通过长寿命的中间状态或太阳直接在太阳外产生伽马射线的这些颗粒。这些过程将在随后的伽玛射线的能量谱中产生特征,即分别是盒子状或线状形状的特征。我们已经使用Fermi大面积望远镜收集的10年伽玛射线事件样本进行了专门的分析,该样本在能量谱中搜索光谱特征作为暗物质歼灭的标志。在通过长寿命介体的伽马射线产生的情况下,我们还评估了来自深色物质质量范围从3 GEV/c $^2 $范围从3 gev/c $^2 $到约1.8 tev/c $^2 $的暗物质旋转旋转依赖性和无自旋的散射横截面约束。 In the mass range up to about 150 GeV/c$^2$ the limits are in the range $10^{-46} - 10^{-45}$ cm$^{2}$ for the spin-dependent scattering and in the range $10^{-48} - 10^{-47}$ cm$^{2}$ for the spin-independent case.变异范围取决于调解器的衰减长度。

Dark matter particles from the Galactic halo can be gravitationally trapped in the solar core or in external orbits. The enhanced density of dark matter particles either in the solar core or in external orbits can result in the annihilation of these particles producing gamma rays via long-lived intermediate states or directly outside the Sun, respectively. These processes would yield characteristic features in the energy spectrum of the subsequent gamma rays, i.e., a box-like or line-like shaped feature, respectively. We have performed a dedicated analysis using a 10-years sample of gamma-ray events from the Sun collected by the Fermi Large Area Telescope searching for spectral features in the energy spectrum as a signature of dark matter annihilation. In the scenario of gamma-ray production via long-lived mediators we have also evaluated the dark matter-nucleon spin-dependent and spin-independent scattering cross section constraints from the flux limits in a dark matter mass range from 3 GeV/c$^2$ up to about 1.8 TeV/c$^2$. In the mass range up to about 150 GeV/c$^2$ the limits are in the range $10^{-46} - 10^{-45}$ cm$^{2}$ for the spin-dependent scattering and in the range $10^{-48} - 10^{-47}$ cm$^{2}$ for the spin-independent case. The range of variation depends on the decay length of the mediator.

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