论文标题

4U〜1608--52的Insight-HXMT观察:热核爆发与吸积环境之间相互作用的证据

Insight-HXMT observation on 4U~1608--52: evidence of interplay between thermonuclear burst and accretion environments

论文作者

Chen, Yu-Peng, Zhang, Shu, Ji, Long, Zhang, Shuang-Nan, Kong, Ling-Da, Wang, Peng-Ju, Chang, Zhi, Peng, Jing-Qiang, Li, Jian, Qu, Jin-Lu

论文摘要

I型爆发可以通过辐射压力和构成的吸积过程和X射线二进制的电晕/边界层影响积聚过程,反之亦然。我们研究了1-50 keV中Insight-HXMT检测到的4U 1608-52的明亮光球半径膨胀(PRE)爆发的时间演变,目的是研究爆发与持久发射之间的相互作用。除了从中子恒星(NS)表面发射的发射外,我们在软(<3 keV)和硬(> 10 keV)X射线带中找到残差。时间分辨光谱法表明,过量可以归因于增强的前爆发/持续发射或电晕/边界层爆发发射的构成。 Comptonization模型是一个卷积热弹能模型(XSPEC中的THCOMP),并且构成参数固定在从持久发射中得出的值。我们发现,在预阶段,在去除爆发前/持续发射或爆发发射的构成之后,NS表面发射显示出平稳,然后升高,直到Photosphere触摸到NS表面,导致当时的磁通峰。我们推测,上面的发现与磁盘的NS表面的遮挡的下部相对应,由于内部磁盘蒸发而暴露于脉冲上的视线。 FA模型与卷积热弹药模型之间的一致性表明了热核突发与增生环境之间的相互作用。这些现象通常不会由常规的黑体模型拟合出现,这可能是由于先前观察结果中计数率低和狭窄的能量覆盖率所致。

A type-I burst could influence the accretion process through radiation pressure and Comptonization both for the accretion disk and the corona/boundary layer of an X-ray binary, and vice versa. We investigate the temporal evolution of a bright photospheric radius expansion (PRE) burst of 4U 1608-52 detected by Insight-HXMT in 1-50 keV, with the aim of studying the interplay between the burst and persistent emission. Apart from the emission from the neutron star (NS) surface, we find the residuals both in the soft (<3 keV) and hard (>10 keV) X-ray band. Time-resolved spectroscopy reveals that the excess can be attributed to an enhanced pre-burst/persistent emission or the Comptonization of the burst emission by the corona/boundary layer. The Comptonization model is a convolution thermal-Comptonization model (thcomp in XSPEC) and the Comptonization parameters are fixed at the values derived from the persistent emission. We find, during the PRE phase, after the enhanced pre-burst/persistent emission or the Comptonization of the burst emission is removed, the NS surface emission shows a plateau, and then a rise until the photosphere touches down to the NS surface, resulting in a flux peak at that moment. We speculate that the findings above correspond to that the obscured lower part of the NS surface by the disk is exposed to the line of sight due to the inner disk evaporation by the burst emission. The consistency between the fa model and convolution thermal-Comptonization model indicates the interplay between thermonuclear bursts and accretion environments. These phenomena did not usually show up by the conventional blackbody model fitting, which may be due to low count rate and narrow energy coverage in previous observations.

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