论文标题

通过时间变化探测黑洞积聚

Probing black-hole accretion through time variability

论文作者

De Marco, Barbara, Motta, Sara E., Belloni, Tomaso M.

论文摘要

通量变异性是Black Hole(BH)吸收系统的非凡特性,也是研究积分流的多尺度结构的强大工具。 X射线带是一些最快的变化发生的地方,指向靠近BH的最内向区域。对快速时间变异性的研究为我们提供了探索紧凑型物体周围的积聚流的方法,这些方式仅通过光谱分析无法访问,并窥视无法与当前可用的仪器进行成像的区域。在本章中,我们将讨论恒星质量BH系统中的快速X射线变异性,即包含恒星和BH的二元系统,偶尔将其与活性银河系核中超质量BHS的观察结果进行对比。我们将探讨如何在多个研究中使用X射线通量的快速变化,以诊断这些系统中增生流的最内向区域。为此,我们将概述目前使用的X射线变异性研究的分析方法,描述对植物和准周期现象的观察结果,并讨论一些提出的模型。

Flux variability is a remarkable property of black hole (BH) accreting systems, and a powerful tool to investigate the multi-scale structure of the accretion flow. The X-ray band is where some of the most rapid variations occur, pointing to an origin in the innermost regions close to the BH. The study of fast time variability provides us with means to explore the accretion flow around compact objects in ways which are inaccessible via spectral analysis alone, and to peek at regions which cannot be imaged with the currently available instrumentation. In this chapter we will discuss fast X-ray variability in stellar-mass BH systems, namely binary systems containing a star and a BH, occasionally contrasting it with observations of supermassive BHs in active galactic nuclei. We will explore how rapid variations of the X-ray flux have been used in multiple studies as a diagnostic of the innermost regions of the accretion flow in these systems. To this aim we will provide an overview of the currently most used analysis approaches for the study of X-ray variability, describe observations of both aperiodic and quasi-periodic phenomena, and discuss some of the proposed models.

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