首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >The Fermi-LAT gamma-ray excess at the Galactic Center in the singlet-doublet fermion dark matter model
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The Fermi-LAT gamma-ray excess at the Galactic Center in the singlet-doublet fermion dark matter model

机译:单重态-双重态费米子暗物质模型中银河中心的费米-拉特γ射线过量

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摘要

The singlet-doublet fermion dark matter model (SDFDM) provides a good DM candidate as well as the possibility of generating neutrino masses radiatively. The search and identification of DM requires the combined effort of both indirect and direct DM detection experiments in addition to the LHC. Remarkably, an excess of GeV gamma rays from the Galactic Center (GCE) has been measured with the Fermi Large Area Telescope (LAT) which appears to be robust with respect to changes in the diffuse galactic background modeling. Although several astrophysical explanations have been proposed, DM remains a simple and well motivated alternative. In this work, we examine the sensitivities of dark matter searches in the SDFDM scenario using Fermi-LAT, CTA, IceCube/DeepCore, LUX, PICO and LHC with an emphasis on exploring the regions of the parameter space that can account for the GCE. We find that DM particles present in this model with masses close to similar to 99 GeV and similar to(173-190) GeV annihilating predominantly into the W+W- channel and t (t) over bar channel respectively, provide an acceptable fit to the GCE while being consistent with different current experimental bounds. We also find that much of the obtained parameter space can be ruled out by future direct search experiments like LZ and XENON-1T, in case of null results by these detectors. Interestingly, we show that the most recent data by LUX is starting to probe the best fit region in the SDFDM model.
机译:单重态-双重态费米子暗物质模型(SDFDM)提供了良好的DM候选物,并提供了辐射产生中微子质量的可能性。 DM的搜索和识别除了LHC之外,还需要间接和直接DM检测实验的共同努力。值得注意的是,用费米大面积望远镜(LAT)测量了来自银河系中心(GCE)的过量GeV伽马射线,这对于弥散银河系背景建模的变化似乎很可靠。尽管已经提出了几种天体解释,但是DM仍然是一种简单且动机良好的替代方法。在这项工作中,我们研究了使用费米-拉特,CTA,IceCube / DeepCore,LUX,PICO和LHC在SDFDM方案中暗物质搜索的敏感性,重点是探索可以解释GCE的参数空间区域。我们发现该模型中存在的质量接近于99 GeV且类似于(173-190)GeV的DM粒子分别主要消失在W + W-通道和bar通道上的t(t)上,为GCE,同时与当前不同的实验范围保持一致。我们还发现,在这些检测器没有结果的情况下,可以通过将来的直接搜索实验(例如LZ和XENON-1T)排除大部分获得的参数空间。有趣的是,我们表明LUX的最新数据开始探索SDFDM模型中的最佳拟合区域。

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