论文标题

超X射线脉冲星NGC 300 ULX-1的光谱演变

Spectral Evolution of Ultraluminous X-ray Pulsar NGC 300 ULX-1

论文作者

Ng, Mason, Remillard, Ronald A., Steiner, James F., Chakrabarty, Deepto, Pasham, Dheeraj R.

论文摘要

我们报告了2018---2019期间Neutron Star Interior Coption Explorer(NICER)的超X射线Pulsar NGC 300 ULX-1的一年软X射线观测活动的结果。我们的分析还利用了来自Swift/XRT和XMM-Newton的数据,以建模并从附近的X射线二进制二进制NGC 300 X-1中删除污染。我们在0.4--4.0 keV范围内构建并安装了一系列为5天的NGC 300 ULX-1的5天平均光谱,以评估源的长期光谱演化,并发现吸收的幂律模型提供了最佳的整体拟合度。在我们的观察过程中,源通量(0.4--4.0 keV;吸收)从$ 2 \ times10^{ - 12} $到$ 10^{ - 13} { - 13} { - 13} {\ rm \,erg \,erg \,s^{ - s^{-1}} $γ\大约2.6 $。我们将光谱软化解释为从积聚磁盘边缘的重新加工发射,而脉冲星则被可能的进攻磁盘遮盖了。通过包含磁盘黑体组件,一些频谱拟合显着改善,我们推测这可能是由于部分覆盖吸收剂在默默无闻的发作之间出现的脉冲星。我们认为,我们观察到系统的低频率状态(由于吸收线的吸收),偶尔出现了脉冲星,这表明嵌套在长期积聚磁盘预进时间尺度上的短期源可变性。

We report on results from a one-year soft X-ray observing campaign of the ultraluminous X-ray pulsar NGC 300 ULX-1 by the Neutron star Interior Composition Explorer (NICER) during 2018--2019. Our analysis also made use of data from Swift/XRT and XMM-Newton in order to model and remove contamination from the nearby eclipsing X-ray binary NGC 300 X-1. We constructed and fitted a series of 5-day averaged NICER spectra of NGC 300 ULX-1 in the 0.4--4.0 keV range to evaluate the long-term spectral evolution of the source, and found that an absorbed power-law model provided the best fit overall. Over the course of our observations, the source flux (0.4--4.0 keV; absorbed) dimmed from $2\times10^{-12}$ to below $10^{-13}{\rm\,erg\,s^{-1}\,cm^{-2}}$ and the spectrum softened, with the photon index going from $Γ\approx1.6$ to $Γ\approx2.6$. We interpret the spectral softening as reprocessed emission from the accretion disk edge coming into view while the pulsar was obscured by the possibly precessing disk. Some spectral fits were significantly improved by the inclusion of a disk blackbody component, and we surmise that this could be due to the pulsar emerging in between obscuration episodes by partial covering absorbers. We posit that we observed a low-flux state of the system (due to line-of-sight absorption) punctuated by the occasional appearance of the pulsar, indicating short-term source variability nested in longer-term accretion disk precession timescales.

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