论文标题
IA型超新星的后期光曲线:与观察的面对模型
The Late-Time Light Curves of Type Ia Supernovae: Confronting Models with Observations
论文作者
论文摘要
IA型超新星(SNE IA)在测量哈勃常数和深色能量中起着标准化的蜡烛的关键作用。增加证据指向多个可能的爆炸通道作为正常SNE IA的起源,对宇宙学参数的确定可能有系统的影响。我们首次对公共可用的SN IA模型核合成数据进行了全面比较,并观察到了SN IA事件的延迟光曲线观察。这些模型涵盖了广泛的白色矮人(WD)祖细胞质量,金属性,爆炸通道和数值方法。我们专注于$^{57} $ ni及其等速衰减产品$^{57} $ co在为延迟时间($ t> 1000 $ d)sne ia的光曲线提供动力的影响。 $^{57} $ ni和$^{57} $ co相对于更丰富的放射性分类$^{56} $ ni是中子富含中子的,因此,在较高密度的近chandrashekhar(接近 - $ m _ {\ rm chandrashekhar(\ rm chandrashekhar)中,是中性化的敏感探测。我们证明了一个SN IA事件的观察结果,SN 2015F仅与一个子$ m _ {\ rm ch} $ WD祖细胞一致。观察其他四个事件(SN 2011FE,SN 2012CG,SN 2014J,SN2013AA)与接近$ m _ {\ rm ch} $和sub- $ m _ {\ rm ch} $祖细胞一致。持续观察附近SNE IA的延迟光曲线将提供有关SN IA祖细胞性质的重要信息。
Type Ia supernovae (SNe Ia) play a crucial role as standardizable candles in measurements of the Hubble constant and dark energy. Increasing evidence points towards multiple possible explosion channels as the origin of normal SNe Ia, with possible systematic effects on the determination of cosmological parameters. We present, for the first time, a comprehensive comparison of publicly-available SN Ia model nucleosynthetic data with observations of late-time light curve observations of SN Ia events. These models span a wide range of white dwarf (WD) progenitor masses, metallicities, explosion channels, and numerical methodologies. We focus on the influence of $^{57}$Ni and its isobaric decay product $^{57}$Co in powering the late-time ($t > 1000$ d) light curves of SNe Ia. $^{57}$Ni and $^{57}$Co are neutron-rich relative to the more abundant radioisotope $^{56}$Ni, and are consequently a sensitive probe of neutronization at the higher densities of near-Chandrashekhar (near-$M_{\rm Ch}$) progenitor WDs. We demonstrate that observations of one SN Ia event, SN 2015F is only consistent with a sub-$M_{\rm Ch}$ WD progenitor. Observations of four other events (SN 2011fe, SN 2012cg, SN 2014J, SN2013aa) are consistent with both near-$M_{\rm Ch}$ and sub-$M_{\rm Ch}$ progenitors. Continued observations of late-time light curves of nearby SNe Ia will provide crucial information on the nature of the SN Ia progenitors.