论文标题
银河黑洞候选人Maxi J1803-298的发现和长期宽带X射线监测
Discovery and Long-term Broadband X-ray monitoring of Galactic Black Hole Candidate MAXI J1803-298
论文作者
论文摘要
我们报告了新的银河黑洞候选人Maxi J1803 $ - 298美元的宽带X射线监控的结果,其爆发期间具有Maxi/GSC和Swift/Bat。在2021年5月1日的发现之后,低于10 kev的软X射线通量以$ \ sim 10 $ $天的速度迅速增加,然后在5个月内逐渐减少。在最明亮的阶段,来源通过中间状态表现出从低/硬状态到高/软状态的状态过渡。爆发期间的宽带X射线光谱在磁盘黑体上加上其热或非热综合化。在过渡之前,源光谱是由热构成组件描述的,其光子指数为$ \ sim 1.7 $,电子温度为$ \ sim 30 $ kev,而过渡后观察到了强磁盘黑体组件。这些时期的光谱特性分别与低/硬状态和高/软状态一致。在中间状态下发现了持续几天的突然通量下降,而硬度比无关,硬度比显着变化。造成这种变化的一个可能原因是,在磁盘过渡时,质量积聚速率迅速增加,这引起了强烈的Compton Thick-Thick-Thick-Thick-Thick-thick thick thick-thick the X射线通量。假设存在一个无旋转的黑洞,我们估计黑洞质量为Maxi J1803 $ - $ 298为$ 5.8 \ pm 0.4〜(\ cos I/\ cos 70^\ circ)^{ - 1/2}(d/8〜〜\ m mathrm {kpc})以高/软状态获得。
We report the results from the broad-band X-ray monitoring of the new Galactic black hole candidate MAXI J1803$-$298 with the MAXI/GSC and Swift/BAT during its outburst. After the discovery on 2021 May 1, the soft X-ray flux below 10 keV rapidly increased for $\sim 10$ days and then have been gradually decreasing over 5 months. At the brightest phase, the source exhibited the state transition from the low/hard state to the high/soft state via the intermediate state. The broad-band X-ray spectrum during the outburst was well described with a disk blackbody plus its thermal or non-thermal Comptonization. Before the transition the source spectrum was described by a thermal Comptonization component with a photon index of $\sim 1.7$ and an electron temperature of $\sim 30$ keV, whereas a strong disk blackbody component was observed after the transition. The spectral properties in these periods are consistent with the low/hard state and the high/soft state, respectively. A sudden flux drop with a few days duration, unassociated with a significant change in the hardness ratio, was found in the intermediate state. A possible cause of this variation is that the mass accretion rate rapidly increased at the disk transition, which induced a strong Compton-thick outflow and scattered out the X-ray flux. Assuming a non-spinning black hole, we estimated a black hole mass of MAXI J1803$-$298 as $5.8 \pm 0.4~(\cos i/\cos 70^\circ)^{-1/2} (D/8~\mathrm{kpc})~M_\odot$ (where $i$ and $D$ are the inclination angle and the distance) from the inner disk radius obtained in the high/soft state.