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Gamma-ray limits on neutrino lines

机译:中微子线的伽马射线极限

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摘要

Monochromatic neutrinos from dark matter annihilations (chi chi -> nu(nu) over bar) are always produced in association with a gamma-ray spectrum generated by electroweak bremsstrahlung. Consequently, these neutrino lines can be searched for not only with neutrino detectors but also indirectly with gamma-ray telescopes. Here, we derive limits on the dark matter annihilation cross section into neutrinos based on recent Fermi-LAT and HESS data. We find that, for dark matter masses above 200 GeV, gamma-ray data actually set the most stringent constraints on neutrino lines from dark matter annihilation and, therefore, an upper bound on the dark matter total annihilation cross section. In addition, we point out that gamma ray telescopes, unlike neutrino detectors, have the potential to distinguish the flavor of the final state neutrino. Our results indicate that we have already entered into a new era where gamma-ray telescopes are more sensitive than neutrino detectors to neutrino lines from dark matter annihilation.
机译:暗物质an灭(chi chi-> nu(nu)over bar)产生的单色中微子通常与电弱ms致辐射所产生的伽马射线光谱有关。因此,不仅可以使用中微子探测器来搜索这些中微子线,还可以使用伽马射线望远镜来间接搜索这些中微子线。在这里,我们根据最近的费米-拉特(Fermi-LAT)和HESS数据得出暗物质an灭截面进入中微子的极限。我们发现,对于质量高于200 GeV的暗物质,γ射线数据实际上对暗物质an灭产生的中微子线设置了最严格的约束,因此,暗物质总hil灭横截面的上限受到限制。此外,我们指出,与中微子探测器不同,伽马射线望远镜有可能区分最终状态中微子的味道。我们的结果表明,我们已经进入了一个新时代,伽玛射线望远镜比中微子探测器对暗物质an灭的中微子线更为敏感。

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