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Radio Cherenkov signals from the Moon: Neutrinos and cosmic rays

机译:切伦科夫电台从月球发出的信号:中微子和宇宙射线

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Neutrino production of radio Cherenkov signals in the Moon is the object of radio telescope observations. Depending on the energy range and detection parameters, the dominant contribution to the neutrino signal may come from interactions of the neutrino on the Moon facing the telescope, rather than neutrinos that have traversed a portion of the Moon. Using the approximate analytic expression of the effective lunar aperture from a recent paper by Gayley, Mutel and Jaeger, we evaluate the background from cosmic ray interactions in the lunar regolith. We also consider the modifications to the effective lunar aperture from generic non-standard model neutrino interactions. A background to neutrino signals are radio Cherenkov signals from cosmic ray interactions. For cosmogenic neutrino fluxes, neutrino signals will be difficult to observe because of low neutrino flux at the high energy end and large cosmic ray background in the lower energy range considered here. We show that lunar radio detection of neutrino interactions is best suited to constrain or measure neutrinos from astrophysical sources and probe non-standard neutrino-nucleon interactions such as microscopic black hole production.
机译:月球中的Cherenkov射电信号的中微子产生是射电望远镜观测的对象。根据能量范围和检测参数,对中微子信号的主要贡献可能来自面对望远镜的月球上中微子的相互作用,而不是穿过月球一部分的中微子的相互作用。使用Gayley,Mutel和Jaeger最近发表的一篇论文的有效月球孔径的近似解析表达式,我们评估了月球巨石中宇宙射线相互作用的背景。我们还考虑了通用非标准模型中微子相互作用对有效月球孔径的修改。中微子信号的背景是来自宇宙射线相互作用的无线电切伦科夫信号。对于宇宙中微子通量,由于在高能端的中微子通量低,并且在此处考虑的较低能量范围内宇宙射线背景大,因此很难观察到中微子信号。我们显示,中微子相互作用的月球无线电探测最适合于限制或测量来自天体物理学来源的中微子,并探测非标准中微子-核子相互作用,例如微观黑洞的产生。

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