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Supermassive binary black holes among cosmic gamma-ray sources

机译:宇宙伽玛射线源之间的超大质量双黑洞

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Supermassive binary black holes (SBBHs) are a natural outcome of galaxy mergers. Here we show that low-frequency (f <= 10(-6) Hz) quasi-periodic variability observed from cosmic blazar sources can provide substantial inductive support for the presence of close (d less than or similar to 0.1 pc) SBBHs at their centers. It is argued on physical grounds that such close binary systems are likely to give rise to different (although not independent) periodicities in the radio, optical and X-ray/TeV regime, and, hence that detection of appropriate period ratios significantly corroborates the SBBH interpretation. This is illustrated for a binary model where optical longterm periodicity is related to accretion disk interactions, radio periodicity to Newtonian jet precession, and periodicities in the high energy bands to the orbital motion of the jet. We use the observed periodicities to constrain the properties for a sample of SBBH candidates including OJ 287 and AO 0235+16, and discuss the results within the context of jet activity and binary evolution.
机译:超大质量双星黑洞(SBBH)是星系合并的自然产物。在这里,我们表明,从宇宙blazar来源观察到的低频(f <= 10(-6)Hz)准周期变异性可以为它们附近存在(小于或等于0.1 pc)SBBH提供实质性的电感支持。中心。有人基于物理理由认为,这种紧密的二元系统很可能在无线电,光学和X射线/ TeV体制中产生不同的(尽管不是独立的)周期性,因此,检测到适当的周期比可大大证实SBBH解释。对于一个二元模型进行了说明,其中光学长期周期性与吸积盘相互作用,牛顿射流进动的射电周期以及高能带中射流的轨道运动有关。我们使用观察到的周期性来约束SBBH候选样本(包括OJ 287和AO 0235 + 16)的属性,并在射流活动和二元演化的背景下讨论结果。

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