论文标题

从IA型超新星爆炸到其Supernova Remnant的双重变性系统的双重爆炸

The double detonation of a double degenerate system, from Type Ia supernova explosion to its supernova remnant

论文作者

Ferrand, Gilles, Tanikawa, Ataru, Warren, Donald C., Nagataki, Shigehiro, Safi-Harb, Samar, Decourchelle, Anne

论文摘要

IA型超新星(SNE)被认为是由白矮人(WD)的热核爆炸引起的,但是祖细胞系统的性质仍不清楚。最近的理论和观察性发展导致了对双重堕落模型的重新兴趣,尤其是“氦气命令的暴力合并”或“动态驱动的双重脱位双重脱位”(D $^6 $)。在本文中,我们采用现有的D $^6 $ SN型号的输出,并将其带入爆炸后4000年的超新星残留(SNR)阶段,这是所有弹射器都震惊的时间。假设具有统一的环境介质,我们揭示了爆炸机制和空间变化固有的特定特异性特征。第一个爆炸在早期可见可见,而第二次爆炸则在射出的射出中留下了中央密度峰,该峰在后期可见。由于二进制运动引起的初始速度转移,SNR壳一直处于偏心状态。伴侣WD在弹射器中产生一个大圆锥形阴影,在投影中可见,因为黑色斑块被明亮的环包围。这是一个明确而持久的特征,它对观察到的形态的影响取决于SNR的视角。这些结果提供了一种使用IA型SNR的观察来诊断爆炸机制和祖细胞系统的新方法。

Type Ia supernovae (SNe) are believed to be caused by the thermonuclear explosion of a white dwarf (WD), but the nature of the progenitor system(s) is still unclear. Recent theoretical and observational developments have led to renewed interest in double degenerate models, in particular the "helium-ignited violent merger" or "dynamically-driven double-degenerate double-detonation" (D$^6$). In this paper we take the output of an existing D$^6$ SN model and carry it into the supernova remnant (SNR) phase up to 4000 years after the explosion, past the time when all the ejecta have been shocked. Assuming a uniform ambient medium, we reveal specific signatures of the explosion mechanism and spatial variations intrinsic to the ejecta. The first detonation produces an ejecta tail visible at early times, while the second detonation leaves a central density peak in the ejecta that is visible at late times. The SNR shell is off-centre at all times, because of an initial velocity shift due to binary motion. The companion WD produces a large conical shadow in the ejecta, visible in projection as a dark patch surrounded by a bright ring. This is a clear and long-lasting feature that is localized, and its impact on the observed morphology is dependent on the viewing angle of the SNR. These results offer a new way to diagnose the explosion mechanism and progenitor system using observations of a Type Ia SNR.

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