论文标题

2020-2021盘式爆发期间伽马cassiopeiae的X射线排放

The X-ray emission of gamma Cassiopeiae during the 2020-2021 disc eruption

论文作者

Rauw, Gregor, Nazé, Yaël, Motch, Christian, Smith, Myron A., Fló, Joan Guarro, de Oliveira, Raimundo Lopes

论文摘要

伽马CAS以其坚硬而强烈的X射线发射而闻名,该发射可以通过紧凑的伴侣,与热弱人伴侣的风相互作用或恒星与其BE DECORTION DISC之间的磁相互作用来追踪积聚。这些情况应导致硬X射线发射对圆盘密度的不同依赖。我们在2021年1月左右的圆盘活动增强活动中收集了伽马CAS的X射线观测。我们使用专用的光谱和现有宽带光度计的时间序列研究了光盘性能的变化。 H-Alpha,H-Beta和He I 5876发射线的依赖于​​时期的多普勒图旨在表征速度空间中的发射区域。我们分析了在增强的碟片活动发作的关键阶段进行的4个XMM-Newton观测值。档案数据用于研究光学和X射线发射之间的长期相关性。光谱揭示了在增强的圆盘活性发作期间发射区域的径向范围的增加,而V波段通量没有增加。多普勒地图在圆盘中没有揭示由于同伴在BE圆盘外部的假定作用而产生的圆盘中的任何稳定特征。与增强的椎间盘活性相关的硬发射未观察到硬发射的增加。但是,两次,伽玛Cas的软X射线发射强烈衰减,这表明大型喇叭盘更有效地掩盖了椎间盘。 X射线通量的长期变化与V波段光度法之间存在很强的相关性。观察到的伽马CAS的行为表明,BE圆盘外区域的性质与硬X射线发射之间没有直接的联系,但有利于X射线发射水平与BE DISC的内部的性质之间的联系。因此,这些结果散发出积聚或碰撞风场。

gamma Cas is known for its hard and intense X-ray emission that could trace accretion by a compact companion, wind interaction with a hot sub-dwarf companion, or magnetic interaction between the star and its Be decretion disc. These scenarios should lead to diverse dependences of the hard X-ray emission on disc density. We collected X-ray observations of gamma Cas during an episode of enhanced disc activity around January 2021. We investigate the variations in the disc properties using time series of dedicated optical spectroscopy and existing broadband photometry. Epoch-dependent Doppler maps of the H-alpha, H-beta, and He I 5876 emission lines are built to characterise the emission regions in velocity space. We analyse 4 XMM-Newton observations taken at key phases of the enhanced disc activity episode. Archival data are used to study the long-term correlation between optical and X-ray emission. Optical spectroscopy unveils an increase in the radial extent of the emission regions during the episode of enhanced disc activity, whilst no increase in the V-band flux is recorded. Doppler maps do not reveal any stable feature in the disc resulting from the putative action of the companion on the outer parts of the Be disc. No increase in the hard emission is observed in relation to the enhanced disc activity. However, at two occasions, the soft X-ray emission of gamma Cas is strongly attenuated, suggesting more efficient obscuration by a large flaring Be disc. There is a strong correlation between the long-term variations in the X-ray flux and in the V-band photometry. The observed behaviour of gamma Cas suggests no direct link between the properties of the outer regions of the Be disc and the hard X-ray emission, but favours a link between the level of X-ray emission and the properties of the inner part of the Be disc. These results thus disfavour an accretion or colliding wind scenario.

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