The luminosity constraint in the era of precision solar physics

D. Vescovi, Carlo Mascaretti, F. Vissani, L. Piersanti, O. Straniero
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引用次数: 4

Abstract

The luminosity constraint is a very precise relationship linking the power released by the Sun as photons and the solar neutrino fluxes. Such a relation, which is a direct consequence of the physical processes controlling the production and the transport of energy in the solar interior, is of great importance for the studies of solar neutrinos and has a special role for the search of neutrinos from the CNO cycle, whose first detection with a 5$\sigma$ significance has been recently announced by the Borexino collaboration. Here we revise the luminosity constraint, discussing and validating its underlying hypotheses, in the light of latest solar neutrino and luminosity measurements. We generalize the current formulation of the luminosity constraint relation so that it can be easily used in future analysis of solar neutrino data, and we provide a specific application showing the link between CNO and pp neutrino fluxes.
精确太阳物理时代的光度约束
光度约束是太阳以光子形式释放的能量与太阳中微子通量之间的一种非常精确的关系。这种关系是控制太阳内部能量产生和传输的物理过程的直接结果,对太阳中微子的研究具有重要意义,并且对CNO循环中的中微子的搜索具有特殊作用,其首次探测具有5$\sigma$意义最近由Borexino合作宣布。在这里,我们根据最新的太阳中微子和光度测量,修正了光度约束,讨论并验证了其潜在的假设。我们对光度约束关系的现有公式进行了推广,以便于将来对太阳中微子数据的分析,并提供了一个具体的应用来说明CNO和pp中微子通量之间的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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