论文标题
用宇宙射线抗iduterium和抗较高的探测暗物质的高能量窗口
The high energy window of probing dark matter with cosmic-ray antideuterium and antihelium
论文作者
论文摘要
宇宙射线(CR)抗核中通常被认为是低于每个核心GEV的低动能能量的暗物质(DM)间接检测的重要可观察物。由于主要的CR通量迅速朝高能下降,因此在高能量区域中,CR中的二级抗核中有望受到显着抑制($ \ gtrsim 100 $ GEV)。如果DM颗粒很重,则可以高度增强DM的an灭生产,因此DM歼灭产生的抗核中的通量可能会超过高能量下的次级背景,这为DM间接检测打开了高能窗口。我们研究了检测到将重型DM颗粒灭入高能量抗核中的可能性。我们使用Monte-Carlo Generator $ \ texttt {Pythia} $,$ \ texttt {epos-lhc} $和$ \ texttt {dpmjet} $以及合并模型,并通过使用DM Ennihiltration Cross cross and and and and ant and and ant ant and and ant ant and and antip,以模拟产生抗核核。伽马射线数据。我们发现结论取决于DM密度曲线的选择。对于具有DM粒子质量$ \ gtrsim 10 $ tev的“ Cored”类型曲线,DM歼灭的贡献可能超过高能区域中的次级背景,从而打开高能窗口。而对于“ cuspy”类型的轮廓,多余的消失。
Cosmic-ray (CR) anti-nuclei are often considered as important observables for dark matter (DM) indirect detections at low kinetic energies below GeV per nucleon. Since the primary CR fluxes drop quickly towards high energies, the secondary anti-nuclei in CR are expected to be significantly suppressed in high energy regions ($\gtrsim 100$ GeV per nucleon). If DM particles are heavy, the annihilation productions of DM can be highly boosted, thus the fluxes of anti-nuclei produced by DM annihilations may exceed the secondary background at high energies, which opens a high energy window for DM indirect detections. We investigate the possibility of detecting heavy DM particles which annihilate into high energy anti-nuclei. We use Monte-Carlo generators $\texttt{PYTHIA}$, $\texttt{EPOS-LHC}$ and $\texttt{DPMJET}$ and the coalescence model to simulate the production of anti-nuclei, and constrain the DM annihilation cross sections by using the AMS-02 and HAWC antiproton data and the HESS galactic center gamma-ray data. We find that the conclusion depends on the choice of DM density profiles. For the "Cored" type profile with a DM particle mass $\gtrsim 10$ TeV, the contributions from DM annihilations can exceed the secondary background in high energy regions, which opens the high energy window. While for the "Cuspy" type profile, the excess disappears.