论文标题

Eclipsing AMXP Swift J1749.4-2807中的流出和光谱演变与NICER,XMM-NEWTON和NUSTAR

Outflows and spectral evolution in the eclipsing AMXP SWIFT J1749.4-2807 with NICER, XMM-Newton and NuSTAR

论文作者

Marino, A., Anitra, A., Mazzola, S. M., Di Salvo, T., Sanna, A., Bult, P., Guillot, S., Mancuso, G., Ng, M., Riggio, A., Albayati, A. C., Altamirano, D., Arzoumanian, Z., Burderi, L., Cabras, C., Chakrabarty, D., Deiosso, N., Gendreau, K. C., Iaria, R., Manca, A., Strohmayer, T. E.

论文摘要

中子恒星低质量X射线二进制二进制Swift J1749.4-2807是唯一已知的Eclips in Mallisecond X射线脉冲星。在此手稿中,我们在整个2021年的长时间爆发中对系统进行了频谱表征,分析了11个更好的观察结果,并在爆发峰值上分析了11个更好的观察结果和Quasi-Simultanes XMM-Newton和Nustar单一观察结果。宽带频谱与黑色身体组件进行了良好的建模,温度为$ \ sim $ 0.6 keV,很可能与中子星表面的热点相一致,而由powerlaw索引$γ\ sim 1.9 $的组合频谱与热门corona $ \ sim $ \ sim $ 12 kev一起产生。没有发现光盘的直接排放,可能是由于它太酷了。光盘的高截断半径,即以$ \ sim $ 20--30 r $ _ {g} $的形式,是从反射组件中Fe线的扩展轮廓的分析中获得的。 $ \ sim $ 7 kev的蓝移XXVI吸收线的显着检测表明,相对论X射线碟片较弱,通常在X射线二进制文件的硬状态下不存在。通过比较爆发期间观察到的低通量和在保守的质量转移中的预期,我们得出结论,系统中的质量转移是高度保守的,这也是风检测所表明的。最后,单独使用较好的光谱,我们跟随系统逐渐消失。在爆发过程中,随着光谱形状变硬,中子恒星表面上的热点冷却并缩减了,这种趋势可能与在静止期间观察到的纯幂律光谱一致。

The neutron star low-mass X-ray binary SWIFT J1749.4-2807 is the only known eclipsing accreting millisecond X-ray pulsar. In this manuscript we perform a spectral characterization of the system throughout its 2021, two-week-long outburst, analyzing 11 NICER observations and quasi-simultaneous XMM-Newton and NuSTAR single observations at the outburst peak. The broadband spectrum is well-modeled with a black body component with a temperature of $\sim$0.6 keV, most likely consistent with a hot spot on the neutron star surface, and a Comptonisation spectrum with power-law index $Γ\sim 1.9$, arising from a hot corona at $\sim$12 keV. No direct emission from the disc was found, possibly due to it being too cool. A high truncation radius for the disc, i.e., at $\sim$20--30 R$_{G}$ , was obtained from the analysis of the broadened profile of the Fe line in the reflection component. The significant detection of a blue-shifted Fe XXVI absorption line at $\sim$7 keV indicates weakly relativistic X-ray disc winds, which are typically absent in the hard state of X-ray binaries. By comparing the low flux observed during the outburst and the one expected in a conservative mass-transfer, we conclude that mass-transfer in the system is highly non-conservative, as also suggested by the wind detection. Finally, using the Nicer spectra alone, we followed the system while it was fading to quiescence. During the outburst decay, as the spectral shape hardened, the hot spot on the neutron star surface cooled down and shrank, a trend which could be consistent with the pure power-law spectrum observed during quiescence.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源