论文标题

iax类型超新星类型的白色矮人幻影:爆炸与伴侣互动的极化特征

White dwarf deflagrations for Type Iax supernovae: Polarisation signatures from the explosion and companion interaction

论文作者

Bulla, M., Liu, Z. -W., Roepke, F. K., Sim, S. A., Fink, M., Kromer, M., Pakmor, R., Seitenzahl, I. R.

论文摘要

越来越多的证据表明,IAX型超新星可能是二元系统中Chandrasekhar-Mass白矮人的热核脱脂的结果。我们进行蒙特卡洛辐射转移模拟,并预测源自超新星爆炸的光谱极限特征,并随后与伴侣恒星的射流相互作用。具体而言,我们为3D模型计算观察角依赖性通量和极化光谱,该模型模拟了Chandrasekhar-Mass White Dwarf的范围,并为第二个模型模拟了与主序列恒星模拟喷射相互作用。我们发现,由于爆炸的总体球形对称性以及主导射精组成的铁组元件的去极化贡献,固有信号是弱极化的,只有温和的视角依赖性。与伴侣星星的相互作用在弹射器中雕刻出一个空腔,并产生可检测但适度的信号,仅在相对蓝色波长($ \ lessim $ 5000 $ \ unicode {x212b} $)上具有重要意义。特别是,预计观察者方向越来越轻度和红色光谱,而较小的极化信号$ p \ sim0.2 $ p \ sim0.2 $ 2 $在蓝色波长的方向30 $^\ circ $和45 $^\ $ circ $ ave avely ave avely avely avelity的方向上。我们发现从这些方向观察到的相互作用模型与SN 2005HK的光谱级数据之间的相互作用模型之间的合理一致,并解释了此事件的蓝色波长在蓝色波长处看到的最大光偏振信号,这是射流循环相互作用的可能签名。我们鼓励对SNE IAX的进一步偏振,以测试我们的结果是否可以扩展并推广到整个SN IAX类。

Growing evidence suggests that Type Iax supernovae might be the result of thermonuclear deflagrations of Chandrasekhar-mass white dwarfs in binary systems. We carry out Monte Carlo radiative transfer simulations and predict spectropolarimetric features originating from the supernova explosion and subsequent ejecta interaction with the companion star. Specifically, we calculate viewing-angle dependent flux and polarisation spectra for a 3D model simulating the deflagration of a Chandrasekhar-mass white dwarf and, for a second model, simulating the ejecta interaction with a main-sequence star. We find that the intrinsic signal is weakly polarised and only mildly viewing-angle dependent, owing to the overall spherical symmetry of the explosion and the depolarising contribution of iron-group elements dominating the ejecta composition. The interaction with the companion star carves out a cavity in the ejecta and produces a detectable, but modest signal that is significant only at relatively blue wavelengths ($\lesssim$ 5000 $\unicode{x212B}$). In particular, increasingly fainter and redder spectra are predicted for observer orientations further from the cavity, while a modest polarisation signal $P\sim0.2$ per cent is found at blue wavelengths for orientations 30$^\circ$ and 45$^\circ$ away from the cavity. We find a reasonable agreement between the interaction model viewed from these orientations and spectropolarimetric data of SN 2005hk and interpret the maximum-light polarisation signal seen at blue wavelengths for this event as a possible signature of the ejecta-companion interaction. We encourage further polarimetric observations of SNe Iax to test whether our results can be extended and generalised to the whole SN Iax class.

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