Comprehensive Neutrino Light Curves and Spectra: From Presupernova Evolution to Early Supernova Phase
综合中微子光变曲线与能谱:从超新星前身演化到超新星早期阶段
We present the first systematic study of neutrino emissions from massive stars, continuously tracking the late evolutionary stages through the early core-collapse supernova phase. Using progenitor and supernova models, we analyze the neutrino luminosities and spectra for progenitors with initial masses of 10─40 M<SUB>⊙</SUB>. Our systematic analysis reveals that the compactness parameter (ξ<SUB>2.5</SUB>) and carbon─oxygen core mass (M<SUB>CO</SUB>) exhibit strong correlations with neutrino emission. In the presupernova phase, the time-integrated number of neutrinos correlates with ξ<SUB>2.5</SUB> when integrated over the final day and with M<SUB>CO</SUB> for longer durations. For the early supernova phase (<200 ms postbounce), the neutrino properties are relatively insensitive to the specific stellar evolution code used, allowing for a reliable extraction of physical correlations. We confirm that the neutrino emission features, including the electron neutrino burst properties and accretion-powered luminosity of other species, reflect the progenitor's compactness. An evaluation of the observational feasibility for a nearby progenitor using a false-alarm-rate approach suggests that these correlations can persist even under practical detection conditions. Such a joint analysis of both phases provides complementary constraints on the internal structure. All calculated time-series data will be made publicly available.
展开 ▾首次完成跨前身星晚期与超新星早期的连续中微子系统分析;证明早期中微子特征对具体恒星演化代码不敏感,可用以可靠提取前身星结构信息,并用误报率方法评估了观测可行性。
以往研究通常将前超新星中微子发射与核心坍缩超新星早期信号分开处理,缺乏从晚期演化到爆发早期的连续、系统性比较。本文在 10–40 太阳质量范围内首次连续追踪两阶段中微子光变与能谱,为建立统一图景提供了基准。结果显示致密度参数与碳氧核心质量分别在不同时间尺度上与中微子发射强相关,而早期超新星信号对具体恒星演化代码不敏感,说明可从中可靠提取前身星结构信息。未来随着公开时变数据被更多模型交叉检验,并联合多信使观测与三维模拟,这类跨相分析有望发展为超新星预警和前身星诊断的常规工具。
接收 2026-07-18 · 刊出 2026-08-20 · 收录 2026-08-31