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On the Nature of the Variability Power Decay towards Soft Spectral States in X-Ray Binaries. Case Study in Cyg X-1

机译:关于X射线二进制文件中软光谱态的变率功率衰减的性质。 Cyg X-1的案例研究

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摘要

A characteristic feature of the Fourier Power Density Spectrum (PDS) observed from black hole X-ray binaries in low/hard and intermediate spectral states is a broad band-limited noise, characterized by a constant below some frequency (a "break" frequency) and a power law above this frequency. It has been shown that the variability of this type can be produced by the inward diffusion of the local driving perturbations in a bounded configuration (accretion disk or corona). In the framework of this model, the perturbation diffusion time to is related to the phenomenological break frequency, while the PDS power-law slope above the "break" is determined by the viscosity distribution over the configuration. The perturbation diffusion scenario explains the decay of the power of X-ray variability observed in a number of compact sources (containing black hole and neutron star) during an evolution of theses sources from low/hard to high/soft states. We compare the model predictions with the subset of data from Cyg X-1 collected by the Rossi X-ray Time Explorer (RXTE). Our extensive analysis of the Cyg X-1 PDSs demonstrates that the observed integrated power P(sub x), decreases approximately as a square root of the characteristic frequency of the driving oscillations v(sub dr). The RXTE observations of Cyg X-1 allow us to infer P(sub dr), and t(sub o) as a function of v(sub dr). We also apply the basic parameters of observed PDSs, power-law index and low frequency quasiperiodic oscillations. to infer Reynolds (Re) number from the observations using the method developed in our previous paper. Our analysis shows that Re-number increases from values about 10 in low/hard state to that about 70 during the high/soft state. Subject headings: accretion, accretion disks-black hole physics-stars:individual (Cyg X-1) :radiation mechanisms: nonthermal-physical data and processes
机译:在低/硬和中光谱状态下从黑洞X射线双星观察到的傅里叶功率密度谱(PDS)的特征是宽带限制的噪声,其特征是在某个频率(“中断”频率)以下保持恒定以及高于该频率的幂律。已经表明,这种类型的可变性可以通过局部驱动扰动以有界结构(吸积盘或电晕)向内扩散而产生。在此模型的框架中,扰动扩散时间to与现象学断裂频率有关,而“断裂”上方的PDS幂律斜率由构型上的粘度分布确定。扰动扩散的情况解释了在这些紧凑型源(包括黑洞和中子星)从低/硬到高/软状态演变过程中观察到的X射线变异性的衰减。我们将模型预测与由Rossi X射线时间浏览器(RXTE)收集的Cyg X-1数据子集进行比较。我们对Cyg X-1 PDS的广泛分析表明,观察到的积分功率P(sub x)大约以驱动振荡v(sub dr)的特征频率的平方根减小。 Cyg X-1的RXTE观测值使我们可以推断P(sub dr)和t(sub o)是v(sub dr)的函数。我们还应用了观测到的PDS的基本参数,幂律指数和低频准周期振荡。使用我们以前的论文中开发的方法从观测值推断雷诺数(Re)。我们的分析表明,重数从低/硬状态下的大约10值增加到高/软状态下的大约70。主题词:吸积,吸积盘-黑洞物理学-星星:个体(Cyg X-1):辐射机制:非热物理数据和过程

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