再发新星的超软x射线相位作为白矮星质量的指示

M. Kato, I. Hachisu
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引用次数: 4

摘要

我们研究了7颗观测良好的复发新星V745 Sco、M31N 2008-12a、LMC N 1968、U Sco、RS Oph、LMC N 2009a、T Pyx和一颗候选复发新星LMC N 2012a的光学/ x射线光曲线。8颗新星中有6颗表现出一个简单的关系,即超软x射线源(SSS)相位的持续时间是爆发总持续时间的0.70倍($=$ x射线关闭时间),即$t_{\rm SSS}=0.70 t_{\rm关闭}$,爆发总持续时间从10天到260天不等。这6颗复发新星呈现出宽的矩形x射线光曲线形状,其前半周期的x射线计数率变化很大。SSS相位也与一个光学平台相对应,这表明一个大的吸积盘被氢燃烧的WD照射。另外两颗复发新星T Pyx和V745 Sco均呈现出窄三角形的x射线光曲线,没有光学平台相。它们在$t_{\rm SSS}$和$t_{\rm off}$之间的关系与上述六个复发新星有很大的不同。我们还提出了具有不同WD质量和恒星金属丰度的复发新星的理论SSS持续时间($Z=$0.004, 0.01, 0.02和0.05),并与观测到的这些复发新星的持续时间进行了比较。我们发现SSS持续时间可以很好地指示复发新星的WD质量,具有宽的矩形x射线光曲线形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supersoft X-ray phases of recurrent novae as an indicator of their white dwarf masses
We have examined the optical/X-ray light curves of seven well-observed recurrent novae, V745 Sco, M31N 2008-12a, LMC N 1968, U Sco, RS Oph, LMC N 2009a, T Pyx, and one recurrent nova candidate LMC N 2012a. Six novae out of the eight show a simple relation that the duration of supersoft X-ray source (SSS) phase is 0.70 times the total duration of the outburst ($=$ X-ray turnoff time), i.e., $t_{\rm SSS}=0.70 t_{\rm off}$, the total duration of which ranges from 10 days to 260 days. These six recurrent novae show a broad rectangular X-ray light curve shape, first half a period of which is highly variable in the X-ray count rate. The SSS phase corresponds also to an optical plateau phase that indicates a large accretion disk irradiated by a hydrogen-burning WD. The other two recurrent novae, T Pyx and V745 Sco, show a narrow triangular shape of X-ray light curve without an optical plateau phase. Their relations between $t_{\rm SSS}$ and $t_{\rm off}$ are rather different from the above six recurrent novae. We also present theoretical SSS durations for recurrent novae with various WD masses and stellar metallicities ($Z=$0.004, 0.01, 0.02, and 0.05) and compare with observed durations of these recurrent novae. We show that the SSS duration is a good indicator of the WD mass in the recurrent novae with a broad rectangular X-ray light curve shape.
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