首页> 外文期刊>The Astrophysical journal >DOES LOW-FREQUENCY X-RAY QPO BEHAVIOR IN GRS 1915+105 INFLUENCE SUBSEQUENT X-RAY AND INFRARED EVOLUTION?
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DOES LOW-FREQUENCY X-RAY QPO BEHAVIOR IN GRS 1915+105 INFLUENCE SUBSEQUENT X-RAY AND INFRARED EVOLUTION?

机译:GRS 1915 + 105中的低频X射线QPO行为对随后的X射线和红外演化有影响吗?

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摘要

Using observations with the Rossi X-Ray Timing Explorer, we examine the behavior of 2-10 Hz quasi-periodic oscillations (QPOs) during spectrally hard dips in the X-ray light curve of GRS 1915+105 that are accompanied by infrared flares. Of the 12 light curves examined, 9 are β class and three are α class, following the scheme of Belloni et al. In most cases, the QPO frequency is most strongly correlated to the power-law flux, which partially contradicts some earlier claims that the strongest correlation is between QPO frequency and blackbody flux. Seven β-class curves are highly correlated to blackbody features. In several cases, the QPO evolution appears to decouple from the spectral evolution. We find that β-class light curves with strong correlations can be distinguished from those without by their "trigger spike" morphology. We also show that the origin and strength of the subsequent infrared flare may be causally linked to the variations in QPO frequency evolution and not solely tied to the onset of soft X-ray flaring behavior. We divide the 12α- and β-class light curves into three groups based on the evolution of the QPO, the morphology of the trigger spike, and the infrared flare strength. An apparent crossover case leads us to conclude that these groups are not unique modes but represent part of a continuum of accretion behaviors. We believe the QPO behavior at the initiation of the hard dip can ultimately be used to determine the terminating X-ray behavior and the following infrared flaring behavior.
机译:使用Rossi X射线定时资源管理器的观察结果,我们检查了GRS 1915 + 105的X射线光曲线中光谱硬浸并伴有红外耀斑时2-10 Hz准周期振荡(QPO)的行为。按照Belloni等人的方案,在检查的12条光曲线中,有9个属于β类,三个属于α类。在大多数情况下,QPO频率与幂律通量最密切相关,这与一些早先的说法部分矛盾,即早期的说法是QPO频率与黑体通量之间的相关性最强。七个β级曲线与黑体特征高度相关。在某些情况下,QPO演化似乎与光谱演化脱钩。我们发现,具有强相关性的β级光曲线可以通过其“触发尖峰”形态与那些没有强相关性的光曲线区分开。我们还表明,随后的红外耀斑的起源和强度可能与QPO频率演变的变化有因果关系,而不仅与软X射线耀斑行为的发生有关。根据QPO的演变,触发尖峰的形态和红外耀斑强度,将12α级和β级光曲线分为三组。一个明显的交叉案例使我们得出结论,这些组不是唯一的模式,而是代表了一系列增生行为的一部分。我们认为,在硬浸开始时的QPO行为最终可以用于确定终止的X射线行为和随后的红外耀斑行为。

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