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A review of quasi-periodic oscillations from black hole X-ray binaries: Observation and theory

机译:黑洞X射线二十型准周期振荡的综述:观察与理论

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Black hole and neutron star X-ray binary systems routinely show quasi-periodic oscillations (QPOs) in their X-ray flux. Despite being strong, easily measurable signals, their physical origin has long remained elusive. However, recent observational and theoretical work has greatly improved our understanding. Here, we briefly review the basic phenomenology of the different varieties of QPO in both black hole and neutron star systems before focusing mainly on low frequency QPOs in black hole systems, for which much of the recent progress has been made. We describe the detailed statistical properties of these QPOs and review the physical models proposed in the literature, with particular attention to those based on Lense-Thirring precession. This is a relativistic effect whereby a spinning massive object twists up the surrounding spacetime, inducing nodal precession in inclined orbits. We review the theory describing how an accretion flow reacts to the Lense-Thirring effect, including analytic theory and recent numerical simulations. We then describe recent observational tests that provide very strong evidence that at least a certain type of low frequency QPOs are a geometric effect, and good evidence that they are the result of precession. We discuss the possibility of the spin axis of the compact object being misaligned with the binary rotation axis for a large fraction of X-ray binaries, as is required for QPOs to be driven specifically by Lense-Thirring precession, as well as some outstanding gaps in our understanding and future opportunities provided by X-ray polarimeters and/or high throughput X-ray detectors.
机译:黑洞和中子星X射线二元系统在其X射线通量中常规显示准周期性振荡(QPOS)。尽管具有强大,易于可测量的信号,但他们的物理起源长期以来仍然难以捉摸。然而,最近的观察和理论工作大大提高了我们的理解。在这里,我们简要介绍了黑洞和中子星系中的不同品种的基本现象学,并在黑洞系统中的低频QPO上聚焦,最近的进展中的大部分进展。我们描述了这些QPO的详细统计特性,并审查了文献中提出的物理模型,特别注意了基于致力激增的进程的体验。这是一种相对论的效果,从而旋转巨大的物体扭转周围的时空,在倾斜的轨道中诱导节点进隙。我们审查了描述了如何对搅拌颤致效果的影响,包括分析理论和近期数值模拟的理论。然后,我们描述了最近的观察试验,提供了非常强大的证据表明,至少某种类型的低频QPO是几何效果,以及它们是进出的良好证据。我们讨论紧凑型物体的旋转轴的旋转轴的可能性与二进制旋转轴线释放,以便通过致密激光的进录,以及一些出色的间隙来驱动QPOS所需的大部分X射线二进制文件。在我们的理解和未来机会由X射线偏振仪和/或高吞吐量X射线探测器提供。

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