arXiv · 2503.01218
Back to business: SLX 1746--331 after 13 years of silence
Abstract
The black hole candidate system SLX 1746--331 was back to business in 2023, after a long silence of roughly 13 years. An outburst was observed thoroughly by \textit{Insight}-HXMT and \textit{NICER}. The outburst is characterized by spectral dominance of the soft state, where the joint \textit{Insight}-HXMT and \textit{NICER} spectral analysis shows the temperature dependence of the disk flux follows $T_{\rm in}^{3.98}$, and thus suggests that the inner disk reaches to ISCO during almost the entire outburst. By assuming 0.3 $L_{\rm Edd}$ for the peak flux and an inclination angle of zero degrees, the lower limit of the compact object hosted in this system is estimated as 3.28$\pm 2.14 M_\odot$. We also look into the relation of the disk temperature and disk flux for a sample of black hole systems, and by taking the disk temperature derived in the outburst of SLX 1746--331, such a relation results in a mass estimation of $5.2 \pm 4.5M_\odot$. Finally, the spin of the compact object is constrained to larger than 0.8 with a spectral model of kerrbb.
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Jing-Qiang Peng, Shu Zhang, Peng-Ju Wang, Shuang-Nan Zhang, Ling-Da Kong, Yu-Peng Chen, Qing-Cang Shui, Long Ji, Jin-Lu Qu, Lian Tao, Ming-Yu Ge, Rui-Can Ma, Zhi Chang, Jian Li, Zhao-sheng Li, Zhuo-Li Yu, Zhe Yan, Peng Zhang, Yun-Xiang Xiao, Shu-Jie Zhao. 2025-03-03. Back to business: SLX 1746--331 after 13 years of silence. https://doi.org/10.3847/1538-4357%2Facf461
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