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New neutrino source for the study of solar neutrino physics in the vacuum-matter transition region

机译:在真空回转区域中的太阳中微子物理学研究新的中微子来源

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摘要

Production of a neutrino source through a proton-induced reaction is studied by using the particle transport code GEANT4. Unstable isotopes such as Si-27 can be produced when the Al-27 target is bombarded by 15-MeV energetic proton beams. Through the beta-decay process of the unstable isotope, a new electron-neutrino source in the 0-5.0 MeV energy range is obtained. Proton-induced reactions are simulated with JENDL-4.0 High Energy File (JENDL-4.0/HE). For radioactive decay processes, we use the G4 radioactive decay model based on the Evaluated Nuclear Structure Data File (ENSDF). We suggest detailed target systems required for future solar neutrino experiments, in particular for the vacuum-matter transition region. As for a detection system of the new neutrino source, we evaluate reaction or event rates for available radiochemical detectors and Low Energy Neutrino Astronomy (LENA)-type scintillator detector and discuss effects due to possible sterile neutrinos as an application.
机译:通过使用质子诱导的反应来研究通过使用颗粒传输代码GEANT4来生产通过质子诱导的反应。 当Al-27目标被15MeV精力充沛的质子束轰击时,可以制造诸如Si-27的不稳定同位素。 通过不稳定同位素的β-衰减过程,获得0-5.0MeV能量范围内的新电子 - 中微子源。 用Jendl-4.0高能量文件(JENDL-4.0 / H)模拟质子诱导的反应。 对于放射性衰减过程,我们使用基于评估的核结构数据文件(ENSDF)的G4放射性衰减模型。 我们建议未来太阳能中微子实验所需的详细目标系统,特别是对于真空转变区域。 至于新中微子源的检测系统,我们评估可用的放射化学探测器和低能中微子天文学(Lena)型闪烁体检测器的反应或事件率,并讨论由于可能的无菌中微子作为应用而讨论的效果。

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