论文标题

在共生系统中通过风积聚引起的多个NOVA爆发的模拟

Simulations of Multiple Nova Eruptions Induced by Wind Accretion in Symbiotic Systems

论文作者

Hillman, Yael, Kashi, Amit

论文摘要

我们使用联合二元演化代码,包括动态效应来研究共生系统中的Nova爆发。在演变之后,超过$ \ sim10^5 $年,在125万美元的$ 125万\ odot $ white dwarf(wd)增生器的表面上进行了多个连续的Nova爆发,我们介绍了两种类型的系统模拟之间的比较。第一个是常见的,众所周知的灾难性变量(CV)系统,其中主序列供体恒星通过Roche-Lobe Overflow将质量转移到其WD伴侣中。第二个是一个独立的,广泛分离的共生系统,其中渐近巨型分支供体恒星通过强风将质量转移到其WD伴侣中。对于后者,我们使用Bondi-Hoyle-Lyttleton处方以及轨道动力学来计算吸积率。我们使用合并的恒星演化代码遵循两个模拟的Nova爆发,包括质量,增生率和轨道特征的变化。我们发现,尽管CV的平均积聚率仍然相当恒定,但共生系统的高积聚率不同。对两个模拟的积聚率相似的时期的检查表明,进化行为是相同的。对于给定的WD质量,我们获得了这一点,质量的质量最终决定了发展的速度,并且捐助者的出色类别对Novae的发展没有意义。我们讨论了几个观察到的系统,发现我们的结果与广泛分离的共生系统中Novae的估计参数一致。

We use a combined binary evolution code including dynamical effects to study nova eruptions in a symbiotic system. Following the evolution, over $\sim10^5$ years, of multiple consecutive nova eruptions on the surface of a $1.25M_\odot$ white dwarf (WD) accretor, we present a comparison between simulations of two types of systems. The first is the common, well known, cataclysmic variable (CV) system in which a main sequence donor star transfers mass to its WD companion via Roche-lobe overflow. The second is a detached, widely separated, symbiotic system in which an asymptotic giant branch donor star transfers mass to its WD companion via strong winds. For the latter we use the Bondi-Hoyle-Lyttleton prescription along with orbital dynamics to calculate the accretion rate. We use the combined stellar evolution code to follow the nova eruptions of both simulations including changes in mass, accretion rate and orbital features. We find that while the average accretion rate for the CV remains fairly constant, the symbiotic system experiences distinct epochs of high and low accretion rates. The examination of epochs for which the accretion rates of both simulations are similar, shows that the evolutionary behaviors are identical. We obtain that for a given WD mass, the rate that mass is accreted ultimately determines the development, and that the stellar class of the donor is of no significance to the development of novae. We discuss several observed systems and find that our results are consistent with estimated parameters of novae in widely separated symbiotic systems.

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