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Massive Supernovae in Binary Systems

机译:二元系统中的大量超新星

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The presence of a close binary companion can affect the evolution of a massive star through one or more episodes of mass transfer, or by merger in a common-envelope phase. Monte Carlo calculations indicate that ~20 – 35% of all massive supernovae are affected by processes of this type. The duplicity of the progenitor may be revealed by the illumination, in the supernova event, of axially symmetric material that had previously been ejected during the mass-transfer phase or by the expulsion of a common envelope. Moreover, the properties of the progenitor star, the peak supernova luminosity, and other observable features of the supernova event can be affected by prior binary membership. Binary interactions may be the cause of much of the variability among Type II supernova light curves, and may result in Type Ib or Ic events in cases where the entire hydrogen-rich envelope has been stripped from the progenitor. Many of the peculiarities of SN 1987A and SN 1993J may well have resulted from the prior duplicity of the progenitor.
机译:关闭二元伴侣的存在可以通过一个或多个传质阶段或通过合并在共同包络相中来影响大规模恒星的演变。蒙特卡罗计算表明,〜20-35%的所有大量超新星受此类过程的影响。在超新星事件中,可以通过先前在质量转移相期间或通过排出共同的包络的轴对称材料中的轴对称材料的照明来揭示祖先的祖先。此外,通过先前二进制成员资格影响祖先恒星,峰值超新星发光度和其他可观察特征的特性。二元相互作用可能是II型超新星光曲线中大部分变异性的原因,并且可能导致IB型或IC事件,其中在从祖细胞中剥离整个氢气富壳的情况下。 SN 1987A和SN 1993J的许多特点可能是祖先的先前多重性。

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