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首页> 外文期刊>Physical review, D >Dark photons from captured inelastic dark matter annihilation: Charged particle signatures
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Dark photons from captured inelastic dark matter annihilation: Charged particle signatures

机译:来自捕获的无弹性暗物质湮灭的黑光子:带电粒子签名

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摘要

The dark sector may contain a dark photon that kinetically mixes with the Standard Model photon, allowing dark matter to interact weakly with normal matter. In previous work we analyzed the implications of this scenario for dark matter capture by the Sun. Dark matter will gather in the core of the Sun and annihilate to dark photons. These dark photons travel outwards from the center of the Sun and may decay to produce positrons that can be detected by the Alpha Magnetic Spectrometer (AMS-02) on the International Space Station. We found that the dark photon parameter space accessible to this analysis is largely constrained by strong limits on the spin-independent weakly interacting massive particle-nucleon cross section from direct detection experiments. In this paper we build upon previous work by considering the case where the dark sector contains two species of Dirac fermion that are nearly degenerate in mass and couple inelastically to the dark photon. We find that for small values of the mass splitting Δ ~ 100 keV, the predicted positron signal at AMS-02 remains largely unchanged from the previously considered elastic case, while constraints from direct detection are relaxed. As such, there remains a region of parameter space with dark matter mass 100 GeV ? mX ? 10 TeV, dark photon mass 1 MeV ? mA0 ? 100 MeV, and kinetic mixing parameter 10-9 ? ε ? 10-8 that is untouched by supernova observations and fixed target experiments but where an inelastic dark sector may still be discovered using existing AMS-02 data.
机译:黑暗扇区可能含有一个深色光子,其动力学与标准模型光子混合,允许暗物质与正常物质弱弱。在以前的工作中,我们分析了太阳的暗物质捕获的这种情况的影响。暗物质将聚集在太阳的核心上,并湮灭到深色的光子。这些深色光子向外从太阳的中心向外行进,并且可以衰减以产生可以通过国际空间站上的α磁光谱仪(AMS-02)检测的正阳性。我们发现,这种分析可访问的暗光子参数空间主要受到直接检测实验的旋转无关弱相互作用的强烈限制的强烈限制。在本文中,我们通过考虑黑暗扇区含有两种狄拉克码头的情况来建立以前的工作,这些情况几乎退化的质量和夫妇到深色光子。我们发现,对于质量分裂δ〜100kev的小值,AMS-02的预测正电子信号远大于先前考虑的弹性壳体,而来自直接检测的约束被放松。因此,仍然存在具有暗物质质量100 GEV的参数空间区域? MX? 10 TEV,深色光子质量1 MEV? MA0? 100 MeV,动力学混合参数10-9? ε? 10-8由超新星观察和固定目标实验不受影响,而是使用现有AMS-02数据仍可发现无弹性暗扇区。

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