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吸积磁白矮星的局域热核爆发。

Localized thermonuclear bursts from accreting magnetic white dwarfs.

机构信息

Centre for Extragalactic Astronomy, Department of Physics, Durham University, Durham, UK.

Department of Astrophysics/IMAPP, Radboud University, Nijmegen, the Netherlands.

出版信息

Nature. 2022 Apr;604(7906):447-450. doi: 10.1038/s41586-022-04495-6. Epub 2022 Apr 20.

Abstract

Nova explosions are caused by global thermonuclear runaways triggered in the surface layers of accreting white dwarfs. It has been predicted that localized thermonuclear bursts on white dwarfs can also take place, similar to type-I X-ray bursts observed in accreting neutron stars. Unexplained rapid bursts from the binary system TV Columbae, in which mass is accreted onto a moderately strong magnetized white dwarf from a low-mass companion, have been observed on several occasions in the past 40 years. During these bursts, the optical/ultraviolet luminosity increases by a factor of more than  three in less than an hour and fades in around ten hours. Fast outflows have been observed in ultraviolet spectral lines, with velocities of more than 3,500 kilometres per second, comparable to the escape velocity from the white dwarf surface. Here we report on optical bursts observed in TV Columbae and in two additional accreting systems, EI Ursae Majoris and ASASSN-19bh. The bursts have a total energy of approximately 10  times than those of classical nova explosions (micronovae) and bear a strong resemblance to type-I X-ray bursts. We exclude accretion or stellar magnetic reconnection events as their origin and suggest thermonuclear runaway events in magnetically confined accretion columns as a viable explanation.

摘要

新星爆炸是由吸积白矮星表面层触发的全球热核失控引起的。据预测,白矮星上也可能发生局部热核爆炸,类似于在吸积中子星中观测到的 I 型 X 射线爆发。在过去的 40 年中,已经观察到几个双星系统 TV Columbae 的不明原因的快速爆发,在该系统中,物质从低质量伴星吸积到中等强度磁化的白矮星上。在这些爆发中,光学/紫外光度在不到一个小时内增加了超过三倍,并在大约十个小时内衰减。在紫外谱线中观察到快速外流,速度超过每秒 3500 公里,与白矮星表面的逃逸速度相当。在这里,我们报告了在 TV Columbae 以及另外两个吸积系统 EI Ursae Majoris 和 ASASSN-19bh 中观测到的光学爆发。这些爆发的总能量大约是经典新星爆炸(微新星)的 10 倍,与 I 型 X 射线爆发非常相似。我们排除了它们起源于吸积或恒星磁重联事件,并提出在磁限制吸积柱中的热核失控事件作为一种可行的解释。

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