论文标题
Cygnus X-1与Insight-HXMT的光谱定时分析
The spectral-timing analysis of Cygnus X-1 with Insight-HXMT
论文作者
论文摘要
Cygnus X-1作为第一个发现的黑洞二进制,是理解状态过渡机理的关键来源,以及极端重力场中增生的情况。我们提出了对洞察力HXMT任务进行观察结果的频谱计时分析,重点是在1--150 KEV的广泛能量范围内的依赖光谱状态依赖的时序特性,从而将先前的基于RXTE的研究扩展到较低和较高的能量。我们的主要结果是:a)我们成功使用一个简单的经验模型来拟合所有光谱,证实反射成分在软状态下比在硬状态下更强。 b)总分数均方根(RMS)的演变取决于选定的能带和光谱形状,这是功率谱密度(PSD)演化的直接结果; c)在硬/中间状态下,我们看到可变性成分的中心频率与软光子指数$γ_1$之间的明显短期可变性特征和正相关,在15 keV以上的能量上也是如此。功率谱是在软状态下以红色噪声为主导的。这些行为可以追溯到至少90 keV。 d)相干性和相位滞后光谱显示出取决于不同光谱形状的不同行为。
Cygnus X-1, as the first discovered black hole binary, is a key source for understanding the mechanisms of state transitions, and the scenarios of accretion in extreme gravity fields. We present a spectral-timing analysis of observations taken with the Insight-HXMT mission, focusing on the spectral-state dependent timing properties in the broad energy range of 1--150 keV, thus extending previous RXTE-based studies to both lower and higher energies. Our main results are the following: a) We successfully use a simple empirical model to fit all spectra, confirming that the reflection component is stronger in the soft state than in the hard state; b) The evolution of the total fractional root mean square (rms) depends on the selected energy band and the spectral shape, which is a direct result of the evolution of the power spectral densities (PSDs); c) In the hard/intermediate state, we see clear short-term variability features and a positive correlation between central frequencies of the variability components and the soft photon index $Γ_1$, also at energies above 15 keV. The power spectrum is dominated by red noise in the soft state instead. These behaviors can be traced to at least 90 keV; d) The coherence and the phase-lag spectra show different behaviors dependent on different spectral shapes.