论文标题

SN 2001EM中与密集的分离壳的超新星相互作用

Supernova Interaction with a Dense Detached Shell in SN 2001em

论文作者

Chandra, Poonam, Chevalier, Roger A., Chugai, Nikolai, Milisavljevic, Danny, Fransson, Claes

论文摘要

我们对超新星\ snem \进行了全面分析,涵盖了自发现以来的19年。 SN 2001EM是已知的最古老的超新星,它已经经历了从剥离的信封到相互作用的超新星的变形。早期的频谱表明它爆炸为IB型超新星。后来,弹射器赶上了密集的室内H壳,在爆炸前几千年弹出,触发了超新星弹射器与密集的壳之间的相互作用,产生了无线电,X射线和H $α$发射。我们在无线电频段中使用非常大的阵列以及Chandra,XMM-Newton和Swift-XRT的档案数据,以及已发表的H $α$测量值。我们将这些数据与低射频观察结果与巨大的Metrewave射电望远镜相结合,两个时期涵盖了三个频率。尽管观察结果错过了冲击进入密集的壳的阶段,但X射线表明,震动是在1750天左右的密集壳中出来的。数据表明X射线发射的正向休克起源。无线电数据显示,晚期时期的光谱反演($> 5000 $ \,d)约为3 GHz,这模仿了SN 1986j中中央吸收成分的特性。该组件的一个可能的解释是\ snem \的祖细胞是一个大规模的二元系统,经历了一个常见的包膜演化时期。来自\ snem \祖细胞的氢包膜可能由于二元相互作用而丢失。

We carry out a comprehensive analysis of supernova \snem\ covering a period of 19 years since discovery. SN 2001em is the oldest supernova known to have undergone a metamorphosis from a stripped envelope to an interacting supernova. An early spectrum indicates it exploded as a Type Ib supernova. Later, the ejecta caught up with a dense circumstellar H-shell, ejected a few thousand years before the explosion, triggering interaction between the supernova ejecta and the dense shell, producing radio, X-ray and H$α$ emission. We use archival data with the Very Large Array in radio bands and with Chandra, XMM-NEWTON and SWIFT-XRT in X-ray bands, along with published H$α$ measurements. We combine these data with our low radio frequency observations with the Giant Metrewave Radio Telescope at two epochs covering three frequencies. While the observations missed the phase when the shock entered the dense shell, the X-rays indicate that the shock came out of the dense shell at around 1750 days. The data suggest a forward shock origin of the X-ray emission. Radio data show a spectral inversion at late epochs ($> 5000$\,d) at around 3 GHz, which mimics the properties of the central absorbed component seen in SN 1986J. A possible explanation for this component is that the progenitor of \snem\ was a massive binary system which had undergone a period of common envelope evolution. The hydrogen envelope from the \snem\ progenitor may have been lost as a result of binary interaction.

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