论文标题

GRS 1915+105中高度吸收的耀斑的更好的视野

A NICER View of a Highly-Absorbed Flare in GRS 1915+105

论文作者

Neilsen, J., Homan, J., Steiner, J. F., Marcel, G., Cackett, E., Remillard, R. A., Gendreau, K.

论文摘要

在爆发26年后,黑洞X射线二进制GRS 1915+105在2018年初昏暗。它的通量在2019年中期急剧下降,从那以后,它一直保持微弱。偶尔的X射线耀斑使这个微弱的时期(遮盖的状态)打断了,其中许多是我们常规监测程序的一部分。在这里,我们提出了一个明亮耀斑的详细时间分辨光谱,其光谱显示了高柱密度部分覆盖吸收和极深的吸收线的证据(在某些情况下是超过100 eV的等效宽度)。我们研究了用XSTAR使用遮盖气体的时间依赖性电离,最终将吸收归因于密度1e12-1e13 cm^-3的径向分层的吸收剂,从黑洞几个x 1e11 cm处。我们认为,垂直扩展的外盘可以解释这种晦涩。我们讨论了几种情况,以解释晦涩的状态,包括大量流出,质量积聚率的增加以及预示静止方法的外盘的变化,但没有一个完全令人满意。可以通过当前或将来的数据来测试其他解释,例如积聚流影响点的晦涩。

After 26 years in outburst, the black hole X-ray binary GRS 1915+105 dimmed considerably in early 2018; its flux dropped sharply in mid-2019, and it has remained faint ever since. This faint period, the "obscured state," is punctuated by occasional X-ray flares, many of which have been observed by NICER as part of our regular monitoring program. Here we present detailed time-resolved spectroscopy of one bright flare, whose spectrum shows evidence of high column density partial covering absorption and extremely deep absorption lines (equivalent widths over 100 eV in some cases). We study the time-dependent ionization of the obscuring gas with XSTAR, ultimately attributing the absorption to a radially-stratified absorber of density 1e12-1e13 cm^-3 at a ~few x 1e11 cm from the black hole. We argue that a vertically-extended outer disk could explain this obscuration. We discuss several scenarios to explain the obscured state, including massive outflows, an increase in the mass accretion rate, and changes in the outer disk that herald the approach of quiescence, but none are entirely satisfactory. Alternative explanations, such as obscuration by the accretion stream impact point, may be testable with current or future data.

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