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首页> 外文期刊>Journal of Cosmology and Astroparticle Physics >Solar atmospheric neutrinos and the sensitivity floor for solar dark matter annihilation searches
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Solar atmospheric neutrinos and the sensitivity floor for solar dark matter annihilation searches

机译:太阳能大气中微子和太阳浅品湮灭搜索的敏感楼

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摘要

Cosmic rays interacting in the solar atmosphere produce showers that result in a flux of high-energy neutrinos from the Sun. These form an irreducible background to indirect solar WIMP self-annihilation searches, which look for heavy dark matter particles annihilating into final states containing neutrinos in the Solar core. This background will eventually create a sensitivity floor for indirect WIMP self-annihilation searches analogous to that imposed by low-energy solar neutrino interactions for direct dark matter detection experiments. We present a new calculation of the flux of solar atmospheric neutrinos with a detailed treatment of systematic uncertainties inherent in solar atmospheric shower evolution, and we use this to derive the sensitivity floor for indirect solar WIMP annihilation analyses. We find that the floor lies less than one order of magnitude beyond the present experimental limits on spin-dependent WIMP-proton cross sections for some mass points, and that the high-energy solar atmospheric neutrino flux may be observable with running and future neutrino telescopes.
机译:在太阳大气中互动的宇宙射线会产生导致来自太阳的高能中微子的通量的淋浴。这些形成了一个不可约的间接太阳能WIMP自湮灭搜索的背景,它研究了湮灭到太阳芯中含有中微子的最终状态的重质暗物质颗粒。该背景最终将为间接WIMP自湮灭搜索的灵敏度底板类似于由低能量太阳中微子相互作用进行直接暗物质检测实验所施加的。我们在太阳大气淋浴进化中固有的系统不确定性的详细处理,我们展现了新的磁通量的新计算,我们用这将导出间接太阳能黑猩猩湮灭分析的灵敏度楼层。我们发现地板在一些质量点的旋转依赖性WIMP-Proton横截面上的目前实验限制之外的级别不到一个数量级,并且可以观察到高能太阳能大气中微子磁通量可以观察到跑步和未来的中微子望远镜。

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