论文标题
在银河中心使用14年的费米数据搜索暗物质线
A Search for Dark Matter Lines at the Galactic Center with 14 Years of Fermi Data
论文作者
论文摘要
银色物质(DM)以银河系的光环可能会an灭或腐烂到光子,从而产生单色伽玛射线。 We search for DM-induced spectral lines using 14 years of data from the Large Area Telescope onboard the Fermi Gamma-ray Space Telescope ($\textit{Fermi}$-LAT) between $10\,\mathrm{GeV}$ and $2\,\mathrm{TeV}$ in the inner Milky Way leveraging both the spatial and spectral morphology of an expected signal.我们提出的新约束与$ \ langleσv\ rangle \ lyssim 6 \ times 10^{ - 30} \,\ Mathrm {cm}^3/\ mathrm {s} $ for Two-to-to-to-to-two nihihiliation衰减,代表$ 10 \,\ mathrm {gev} $和$ \ sim $$ 500 \,\ mathrm {gev} $之间的领先灵敏度。我们考虑了线条构成对银河中心过量(GCE)的影响,这是以前观察到的连续$ \ sim $ gamga-gamma-rays,可以通过DM Nihihitation解释。 Higgs门户和类似中性的DM场景已被广泛讨论为GCE的起源,由于缺乏观察到的一环衰减对两个光子的缺乏,因此受到了我们的作品的限制。更普遍地,我们解释了无效的结果,从而导致了各种灭绝和腐烂的DM模型,例如中产阶级,重力杆菌和粘合球,表明,尽管连续歼灭在树级上,但在许多情况下,线路搜索比连续体更强大。
Dark matter (DM) in the Milky Way halo may annihilate or decay to photons, producing monochromatic gamma rays. We search for DM-induced spectral lines using 14 years of data from the Large Area Telescope onboard the Fermi Gamma-ray Space Telescope ($\textit{Fermi}$-LAT) between $10\,\mathrm{GeV}$ and $2\,\mathrm{TeV}$ in the inner Milky Way leveraging both the spatial and spectral morphology of an expected signal. We present new constraints as strong as $\langle σv \rangle \lesssim 6\times 10^{-30}\, \mathrm{cm}^3/\mathrm{s}$ for the two-to-two annihilations and $τ\gtrsim 10^{30}\,\mathrm{s}$ for one-to-two decays, representing leading sensitivity between $10\,\mathrm{GeV}$ and $\sim$$500\,\mathrm{GeV}$. We consider the implications of our line-constraints on the Galactic Center Excess (GCE), which is a previously-observed excess of continuum $\sim$GeV gamma-rays that may be explained by DM annihilation. The Higgs portal and neutralino-like DM scenarios, which have been extensively discussed as possible origins of the GCE, are constrained by our work because of the lack of observed one-loop decays to two photons. More generally, we interpret our null results in a variety of annihilating and decaying DM models, such as neutralinos, gravitinos, and glueballs, showing that in many cases the line search is more powerful than the continuum, despite the continuum annihilation being at tree level.