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The progenitors of type-Ia supernovae in semidetached binaries with red giant donors

机译:半独立双星中带有红色巨型供体的Ia型超新星的祖先

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Context. The companions of the exploding carbon-oxygen white dwarfs (CO WDs) that produce type-Ia supernovae (SNe Ia) have still not been conclusively identified. A red-giant (RG) star can fill this role as the mass donor of the exploding WD ? this channel for producing SNe Ia has been named the symbiotic channel. However, previous studies on this channel have given a relatively low rate of SNe Ia. Aims. We aim to systematically investigate the parameter space, Galactic rates, and delay time distributions of SNe Ia arising from the symbiotic channel under a revised mass-transfer prescription. Methods. We adopted an integrated mass-transfer prescription to calculate the mass-transfer process from a RG star onto the WD. In this prescription, the mass-transfer rate varies with the local material states. First, we obtain the parameter space that leads to SNe Ia by evolving a large number of semidetached WD+RG systems with the Eggleton stellar-evolution code. Second, we investigate the Galactic rates and delay-time distributions of SNe Ia using a binary population synthesis method. Results. The parameter space of WD+RG systems that can produce SNe Ia is enlarged significantly judging by our calculations. This channel could produce SNe Ia with intermediate and old ages, contributing up to 5% of all SNe Ia in the Galaxy. Our model increases the SN Ia rate from this channel by a factor of five. We suggest that the symbiotic systems RS Oph and T CrB are strong candidates for the progenitors of SNe Ia.
机译:上下文。爆炸性的碳氧白矮星(CO WD)产生Ia型超新星(SNe Ia)的伴星尚未被最终确定。红巨星(RG)可以充当爆炸WD?的大量捐助者。这个产生SNe Ia的通道被称为共生通道。然而,先前对该通道的研究给出了相对较低的SNe Ia率。目的我们的目标是根据修订的质量转移处方,系统性研究共生通道引起的SNe Ia的参数空间,银河系速率和延迟时间分布。方法。我们采用了集成的传质处方来计算从RG星到WD的传质过程。在该处方中,传质速率随当地物质状态而变化。首先,我们通过使用Eggleton恒星演化代码演化大量的半独立WD + RG系统来获得导致SNe Ia的参数空间。其次,我们使用二元总体合成方法研究SNe Ia的银河速度和延迟时间分布。结果。根据我们的计算,可以产生SNe Ia的WD + RG系统的参数空间显着扩大。这个频道可能会产生中至老年的SNe Ia,占星系中所有SNe Ia的5%。我们的模型将该信道的SN Ia速率提高了五倍。我们建议共生系统RS Oph和T CrB是SNe Ia祖细胞的强候选者。

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