论文标题

从伽马射线爆发超新星光谱中提取高级信息

Extracting high-level information from gamma-ray burst supernova spectra

论文作者

Ashall, Chris, Mazzali, Paolo

论文摘要

辐射传输代码通常在天体物理学中用于构建光谱模型。在这项工作中,我们演示了如何为时间序列的数据生成这些模型可以提供有关超新星(SNE)的独特信息。与以前的工作不同,我们专门集中于获得最佳合成光谱拟合的方法,以及与首选模型参数相关的误差。我们演示了射流质量,射量光度($ l_ {bol} $)和光谱速度($ v_ {ph} $)的变化如何影响合成光谱的结果。例如,我们分析了GRB-SN \,2016JCA的光球相光谱。发现对于大多数时期(余滴扣除很小),$ l_ {bol} $和$ v_ {ph} $的错误是$ \ sim $ 5 \%。射流质量和K.E.的不确定性发现如果可以同时生产Nebular相位数据的模型,则可以预期这将大大减少$ \ sim $ 20%。我们还展示了射出中元素丰度的变化如何产生更好的合成光谱拟合。在SN \的情况下,2016JCA发现$^{56} $ ni丰度减少,降低速度会产生最佳拟合模型。如果$^{56} $ ni在GRB喷气机的侧面或从爆炸中心挖出来,则可能是这种情况。此处介绍的工作可以用作使用相同或相似的辐射转移代码的将来对超新星的未来研究的指南。

Radiation transport codes are often used in astrophysics to construct spectral models. In this work we demonstrate how producing these models for a time series of data can provide unique information about supernovae (SNe). Unlike previous work, we specifically concentrate on the method for obtaining the best synthetic spectral fits, and the errors associated with the preferred model parameters. We demonstrate how varying the ejecta mass, bolometric luminosity ($L_{bol}$) and photospheric velocity ($v_{ph}$), affects the outcome of the synthetic spectra. As an example we analyze the photospheric phase spectra of the GRB-SN\,2016jca. It is found that for most epochs (where the afterglow subtraction is small) the error on $L_{bol}$ and $v_{ph}$ was $\sim$5\%. The uncertainty on ejecta mass and K.E. was found to be $\sim$20%, although this can be expected to dramatically decrease if models of nebular phase data can be simultaneously produced. We also demonstrate how varying the elemental abundance in the ejecta can produce better synthetic spectral fits. In the case of SN\,2016jca it is found that a decreasing $^{56}$Ni abundance as a function of decreasing velocity produces the best fit models. This could be the case if the $^{56}$Ni was sythesised at the side of the GRB jet, or dredged up from the centre of the explosion. The work presented here can be used as a guideline for future studies on supernovae which use the same or similar radiation transfer code.

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