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Sub-Hour X-Ray Variability of High-Energy Peaked BL Lacertae Objects

机译:高能峰BL天牛科天体的亚小时X射线变异性

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The study of multi-wavelength flux variability in BL Lacertae objects is very important to discern unstable processes and emission mechanisms underlying their extreme observational features. While the innermost regions of these objects are not accessible from direct observations, we may draw conclusions about their internal structure via the detection of flux variations on various timescales, based on the light-travel argument. In this paper, we review the sub-hour X-ray variability in high-energy peaked BL Lacertae sources (HBLs) that are bright at X-rays and provide us with an effective tool to study the details related to the physics of the emitting particles. The X-ray emission of these sources is widely accepted to be a synchrotron radiation from the highest-energy electrons, and the complex spectral variability observed in this band reflects the injection and radiative evolution of freshly-accelerated particles. The detection of sub-hour X-ray flux variability is very important since it can be related to the small-scale jet turbulent structures or triggered by unstable processes occurring in the vicinity of a central supermassive black hole. We summarize the fastest X-ray variability instances detected in bright HBLs and discuss their physical implications.
机译:研究BL Lacertae天体的多波长通量变异性对于识别其极端观测特征背后的不稳定过程和发射机制非常重要。虽然无法从直接观察中获得这些物体的最内层区域,但我们可以根据光旅行的论据,通过检测各种时间尺度上的通量变化,得出有关其内部结构的结论。在本文中,我们回顾了在X射线处很亮的高能峰BL蝎虎座放射源(HBLs)的亚小时X射线变异性,并为我们提供了一种有效的工具来研究与发射物理有关的细节粒子。这些源的X射线发射被公认是来自高能电子的同步加速器辐射,并且在该波段中观察到的复杂光谱变化反映了新加速粒子的注入和辐射演化。亚小时X射线通量变异性的检测非常重要,因为它可能与小规模的射流湍流结构有关,或者与中央超大质量黑洞附近发生的不稳定过程触发。我们总结了在明亮的HBL中检测到的最快的X射线可变性实例,并讨论了它们的物理含义。

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