Insight-HXMT观测到的2022年和2023年爆发期间4U 1630-472的奇异盘演化

Jing-Qiang Peng, Shu Zhang, Qing-Cang Shui, Yu-Peng Chen, Shuang-Nan Zhang, Ling-Da Kong, A. Santangelo, Zhuo-Li Yu, Long Ji, Peng-Ju Wang, Zhi Chang, Jian Li and Zhao-sheng Li
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摘要

我们利用 Insight-HXMT 观测数据研究了黑洞 X 射线瞬变双星 4U 1630-472 在 2022 年和 2023 年爆发期间的光谱特性。我们发现,爆发是在特殊的软状态下进行的。kerrbb模型考虑了硬化因子对磁盘温度的影响,发现两次爆发时磁盘的通量和温度分别遵循和。磁通量-温度关系与标准磁盘基本一致。通过拟合无p模型,发现p值(即磁盘温度径向相关性的指数)与磁盘温度呈反相关关系。结合联合诊断分析和非热辐射部分与光度之间的关系图,我们发现一种可能的情况,即磁盘从2022年到2023年向着辐射效率下降的纤细磁盘演化,而这种演化可能取决于高软态非热辐射的部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Peculiar Disk Evolution of 4U 1630-472 Observed by Insight-HXMT During its 2022 and 2023 Outbursts
We study the spectral properties of the black hole X-ray transient binary 4U 1630–472 during its 2022 and 2023 outbursts with Insight-HXMT observations. We find that the outbursts are in peculiar soft states. The effect of the hardening factor on the disk temperature is taken into account by the kerrbb model, and the flux and temperature of the disk are found to follow and for the two outbursts, respectively. The flux–temperature relation is roughly consistent with a standard disk. By fitting with a p-free model, the p-value, the exponent of the radial dependence of the disk temperature, is found to have an anticorrelation with disk temperature. Combining a joint diagnostic analysis with a diagram of the relation between the nonthermal fraction and luminosity, we find a possible scenario that the disk evolves from 2022 to 2023 toward a slim one with a decreasing radiation efficiency, where such an evolution may depend on the fraction of the nonthermal emission in the high soft state.
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