Characterizing the Broadband Reflection Spectrum of MAXI J1803-298 during Its 2021 Outburst with NuSTAR and NICER

Oluwashina K. Adegoke, Javier A. García, Riley M. T. Connors, Yuanze Ding, Guglielmo Mastroserio, James F. Steiner, Adam Ingram, Fiona A. Harrison, John A. Tomsick, Erin Kara, Missagh Mehdipour, Keigo Fukumura, Daniel Stern, Santiago Ubach and Matteo Lucchini
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Abstract

MAXI J1803-298 is a transient black hole candidate discovered in 2021 May during an outburst that lasted several months. Multiple X-ray observations reveal recurring “dipping” intervals in several of its light curves, particularly during the hard/intermediate states, with a typical recurrence period of ∼7 hr. We report analysis of four NuSTAR observations of the source, supplemented with NICER data where available, over the duration of the outburst evolution covering the hard, intermediate, and the soft states. Reflection spectroscopy reveals the black hole to be rapidly spinning (a* = 0.990 ± 0.001) with a near edge-on viewing angle (i = 70° ± 1°). Additionally, we show that the light-curve dips are caused by photoelectric absorption from a moderately ionized absorber whose origin is not fully understood, although it is likely linked to material from the companion star impacting the outer edges of the accretion disk. We further detect absorption lines in some of the spectra, potentially associated with Fe xxv and Fe xxvi, indicative of disk winds with moderate to extreme velocities. During the intermediate state and just before transitioning into the soft state, the source showed a sudden flux increase, which we found to be dominated by soft disk photons and consistent with the filling of the inner accretion disk, at the onset of state transition. In the soft state, we show that models of disk self-irradiation provide a better fit and a preferred explanation to the broadband reflection spectrum, consistent with previous studies of other accreting sources.
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MAXI J1803-298在2021年爆发期间的宽带反射光谱特征
MAXI J1803-298是2021年5月在一次持续数月的爆发中发现的一颗瞬态黑洞候选者。多次x射线观测显示,在它的几个光曲线中反复出现“倾斜”间隔,特别是在硬/中间状态,典型的重复周期为~ 7小时。我们报告了四个NuSTAR观测源的分析,补充了可用的NICER数据,在突出演化的持续时间内,涵盖了硬、中、软状态。反射光谱显示黑洞快速旋转(a* = 0.990±0.001),近边对视角(i = 70°±1°)。此外,我们表明,光曲线的下降是由中等电离吸收剂的光电吸收引起的,其起源尚不完全清楚,尽管它可能与来自伴星的物质撞击吸积盘的外缘有关。我们进一步在一些光谱中检测到吸收线,可能与Fe xxv和Fe xxvi有关,表明磁盘风具有中等到极端的速度。在中间态和过渡到软态之前,源显示出突然的通量增加,我们发现在状态转变开始时,以软盘光子为主,并且与内部吸积盘的填充一致。在软状态下,我们发现圆盘自辐射模型对宽带反射光谱提供了更好的拟合和首选解释,与先前对其他吸积源的研究一致。
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