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Jet Precession Driven by a Supermassive Black Hole Binary System in the BL Lac Object PG 1553+113

机译:在BL LAC对象PG 1553 + 113中由超销钉黑洞二元系统驱动的喷射进程

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The recent discovery of a roughly simultaneous periodic variability in the light curves of the BL Lac object PG 1553+113 at several electromagnetic bands represents the first case of such odd behavior reported in the literature. Motivated by this, we analyzed 15 GHz interferometric maps of the parsec-scale radio jet of PG 1553 +113 to verify the presence of a possible counterpart of this periodic variability. We used the Cross-entropy statistical technique to obtain the structural parameters of the Gaussian components present in the radio maps of this source. We kinematically identified seven jet components formed coincidentally with flare-like features seen in the γ-ray light curve. From the derived jet component positions in the sky plane and their kinematics (ejection epochs, proper motions, and sky position angles), we modeled their temporal changes in terms of a relativistic jet that is steadily precessing in time. Our results indicate a precession period in the observer's reference frame of 2.24 ± 0.03 years, compatible with the periodicity detected in the light curves of PG 1553+113. However, the maxima of the jet Doppler boosting factor are systematically delayed relative to the peaks of the main γ-ray flares. We propose two scenarios that could explain this delay, both based on the existence of a supermassive black hole binary system in PG 1553+113. We estimated the characteristics of this putative binary system that also would be responsible for driving the inferred jet precession.
机译:在若干电磁频带处的BL LAC对象PG 1553 + 113的光曲线中最近发现大致同时的周期性可变性代表了文献中报告的这种奇数行为的第一种情况。由此激励,我们分析了PG 1553 +113的PARSEC级无线电射流的15 GHz干涉测量映射,以验证这种周期性变异性的可能对应物的存在。我们使用跨熵统计技术来获得本源的无线电映射中存在的高斯组件的结构参数。我们在γ射线光曲线中巧合的巧妙地形成的七种喷射特征均识别七个喷射组件。从天空平面和运动学(喷射时期,适当的运动和天空位置角度)的衍生射流组件位置,我们在稳定地耗时的相对论射流方面建模了它们的时间变化。我们的结果表明观察者参考框架的预测时期2.24±0.03岁,与PG 1553 + 113的光曲线中检测到的周期性兼容。然而,喷射多普勒升压因子的最大值相对于主γ射线耀斑的峰系统延迟。我们提出了两个可以根据PG 1553 + 113中的超大分配黑洞二进制系统的存在来解释这一延迟的两个场景。我们估计该推定的二元系统的特征,也负责推动推断的喷射预防。

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