论文标题

探测宇宙射线的风味结构$ e^\ mp $ spectrum及其对暗物质间接搜索的影响

Probing Flavor Structure of Cosmic Ray $e^\mp$ Spectrum and Implications for Dark Matter Indirect Searches

论文作者

Ge, Shao-Feng, He, Hong-Jian, Wang, Yu-Chen, Yuan, Qiang

论文摘要

测量高能宇宙射线电子/正电子(CRE)为暗物质(DM)间接检测提供了重要手段,并用于探测附近的银河系。在这项工作中,我们根据Dampe,Fermi-Lat,AMS-02和Calet实验测量的宇宙射线CRE光谱对DM歼灭的风味结构进行系统分析。我们研究了附近Subhalo中可能的TEV量表DM颗粒的an灭,该subho尺寸旨在解释Dampe CRE数据的可能峰状结构。我们特别注意可能的非谐振过量(除了可能的峰状结构),并证明这种非谐波过量可能主要是由于Subhalo中DM an灭产生的MUON的衰减而引起的。通过这些,我们通过拟合CRE数据来研究从DM歼灭$χ\到E^+e^ - ,μ^+μ^ - ,μ^+μ^ - ,μ^+μ^ - ,通过拟合CRE数据的味道。我们证明,最终状态的衰减$μ^+μ^ - $和$τ^+τ^ - $可以提供非共振的过剩,而峰值则来自$ e^+ e^ - $最终状态。我们进一步使用费米 - 拉特$γ$ ray-ray测量结果进一步分析了对Lepton风味的约束。我们发现,风味成分与相对较低的银河纬度的费米 - 拉特数据一致,而最终状态$τ^\ pm $的比例严重界限。

Measuring high energy cosmic ray electrons/positrons (CRE) provides important means for the dark matter (DM) indirect detection and for probing the nearby galactic sources. In this work, we perform a systematic analysis of the flavor structure of DM annihilations into charged leptons based on the cosmic ray CRE spectra measured by DAMPE, Fermi-LAT, AMS-02, and CALET experiments. We study the annihilations of possible TeV scale DM particles in a nearby subhalo, which is proposed to explain the possible peak-like structure of the DAMPE CRE data. We pay special attention to the possible non-resonant excess (besides the possible peak-like structure) and demonstrate that such non-resonant excess can mainly arise from the decay of muons produced by the DM annihilations in the subhalo. With these we study the flavor composition of the lepton final states from DM annihilations $χχ\to e^+e^-, μ^+μ^-, τ^+τ^-$ by fitting the CRE data. We demonstrate that decays of the final states $μ^+ μ^-$ and $τ^+ τ^-$ can provide the non-resonant excess, while the peak excess arises from the $e^+ e^-$ final state. We further analyze the constraints on the lepton flavor composition using the Fermi-LAT $γ$-ray measurements. We find that the flavor composition is consistent with the Fermi-LAT data at relatively low Galactic latitudes, while the fraction of the final state $τ^\pm$ is severely bounded.

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