论文标题

核心偏离超新星中微子轻曲线的分析解决方案

Analytic solutions for neutrino-light curves of core-collapse supernovae

论文作者

Suwa, Yudai, Harada, Akira, Nakazato, Ken'ichiro, Sumiyoshi, Kohsuke

论文摘要

中微子是银河系中超新星爆炸的信号,也是最有价值的使者,可以为我们提供有关超新星最深部分的信息。特别是,中微子将为我们提供物理量,例如protonutron恒星的半径和质量,这是超新星的中心发动机。这需要一个理论模型,该模型将中微子的光度和平均能量与物理量相关联。在这里,我们通过采用扩散近似近似和静水液的分析密度溶液来显示源自中微子辐射传输方程的中微子光曲线的分析溶液。中微子的光度和平均能量作为时间的功能明确表示,依赖于PNS质量,半径,中微子的总能量,表面密度和不透明度。分析解决方案从爆炸后几秒钟提供了数值模型的良好表示,并允许对这些物理数量进行粗略估计,从观察数据中进行。

Neutrinos are a guaranteed signal from supernova explosions in the Milky Way, and a most valuable messenger that can provide us with information about the deepest parts of supernovae. In particular, neutrinos will provide us with physical quantities, such as the radius and mass of protoneutron stars (PNS), which are the central engine of supernovae. This requires a theoretical model that connects observables such as neutrino luminosity and average energy with physical quantities. Here, we show analytic solutions for the neutrino-light curve derived from the neutrino radiation transport equation by employing the diffusion approximation and the analytic density solution of the hydrostatic equation for a PNS. The neutrino luminosity and the average energy as functions of time are explicitly presented, with dependence on PNS mass, radius, the total energy of neutrinos, surface density, and opacity. The analytic solutions provide good representations of the numerical models from a few seconds after the explosion and allow a rough estimate of these physical quantities to be made from observational data.

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