论文标题

SN 2016IYC:一种由低质量祖先引起的IIB类超新星

SN 2016iyc: A Type IIb supernova arising from a low-mass progenitor

论文作者

Aryan, Amar, Pandey, S. B., Zheng, WeiKang, Filippenko, Alexei V., Vinko, Jozsef, Ouchi, Ryoma, Brink, Thomas G., Halle, Andrew, Molloy, Jeffrey, Kumar, Sahana, Halevi, Goni, Kilpatrick, Charles D., Kumar, Amit, Gupta, Rahul, Ror, Amit Kumar

论文摘要

在这项工作中,已经进行了非常低的IIB超新星(SN)2016IYC的光度和光谱分析。 SN 2016IYC位于相似的超新星(SNE)的分布中的微弱末端。从文献中给定下弹射量($ m _ {\ rm ej} $)和低镍质量($ m _ {\ rm ni} $),结合了SN 2016iyc在微弱的端,一维恒星进化模型附近,9-14 m $ _ $ _ {\ odot} $ Zero-age Main(ZAM)的可能性(Z)的进化( 2016IYC已使用公开可用的代码台面进行。此外,使用流体动力学代码Stella和SNEC模拟了祖细胞模型的合成爆炸。通过质量爆炸量的合成爆炸量在12-13 m $ $ _ {\ odot} $中,具有supernova Radius $ r _ {\ mathrm {0}}} = $(240-300)r $ _ \ ocy, ej} = $(1.89-1.93)m $ _ {\ odot} $,爆炸能量$ e _ {\ rm exp} = $(0.28-0.35)$ \ times 10^{51} $ erg,$ m _ {\ rm ni} $ ni} <0.09 $ m $ m $ ims goss and Imas goss and}因此,SN 2016IYC可能是从SNE IIB质量较低的质量限制附近的祖细胞爆炸。最后,还对SN 2016GKG和SN 2011FU的爆炸爆炸进行了流体动力模拟,以比较研究精通的SNE IIB中的中间和高亮度示例。 SN 2016IYC,SN 2016GKG和SN 2011FU的祖细胞建模和合成爆炸的结果表现为SNE IIB可能的祖细胞的各种质量。

In this work, photometric and spectroscopic analyses of a very low-luminosity Type IIb supernova (SN) 2016iyc have been performed. SN 2016iyc lies near the faint end among the distribution of similar supernovae (SNe). Given lower ejecta mass ($M_{\rm ej}$) and low nickel mass ($M_{\rm Ni}$) from the literature, combined with SN 2016iyc lying near the faint end, one-dimensional stellar evolution models of 9 - 14 M$_{\odot}$ zero-age main-sequence (ZAMS) stars as the possible progenitors of SN 2016iyc have been performed using the publicly available code MESA. Moreover, synthetic explosions of the progenitor models have been simulated using the hydrodynamic evolution codes STELLA and SNEC. The bolometric luminosity light curve and photospheric velocities produced through synthetic explosions of ZAMS stars of mass in the range 12 - 13 M$_{\odot}$ having a pre-supernova radius $R_{\mathrm{0}} =$ (240 - 300) R$_{\odot}$, with $M_{\rm ej} =$ (1.89 - 1.93) M$_{\odot}$, explosion energy $E_{\rm exp} = $ (0.28 - 0.35) $\times 10^{51}$ erg, and $M_{\rm Ni} < 0.09$ M$_{\odot}$, are in good agreement with observations; thus, SN 2016iyc probably exploded from a progenitor near the lower mass limits for SNe IIb. Finally, hydrodynamic simulations of the explosions of SN 2016gkg and SN 2011fu have also been performed to compare intermediate- and high-luminosity examples among well-studied SNe IIb. The results of progenitor modelling and synthetic explosions for SN 2016iyc, SN 2016gkg, and SN 2011fu exhibit a diverse range of mass for the possible progenitors of SNe IIb.

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