论文标题

多波频段准 - Blazar 3C 454.3中的周期性振荡

Multiwaveband Quasi--periodic Oscillation in the Blazar 3C 454.3

论文作者

Sarkar, Arkadipta, Gupta, Alok C., Chitnis, Varsha R., Wiita, Paul J.

论文摘要

我们报告了3C 454.3的$γ$ - 射线光曲线中的准周期振荡(QPO)的检测($>4σ$),以及光光曲线中的同时边缘QPO检测($>2.4σ$)。在这两个波段中都检测到周期性通量调制,其主要周期为$ \ sim 47美元。 $γ$ -Ray QPO持续了450天(从MJD 56800到57250),导致了9个观察到的周期,这是Blazar Light曲线中有史以来最高的周期之一。由于源的白天过境,光曲线几乎对$γ$ ray QPO跨度的一半进行采样,这可以解释光学QPO的较低意义。光曲线的自回旋综合移动平均值(ARIMA)建模显示,QPO期间光曲线的趋势呈指数衰减,以及$ 47 $ $的日期。我们探索了几种物理模型,以解释这种瞬时准周期调制的起源以及在一个月的时期观察到的通量中的总体趋势。这些情况包括一个二进制黑洞系统,一个热点,绕着超级质量黑洞的最内向的圆形轨道绕着旋转,并进行预播。我们得出的结论是,最有可能的情况涉及在弯曲射流中螺旋移动的增强区域。螺旋运动产生QPO,并且喷气机的曲率($ \ sim 0.05^{\ circ} $ pc $^{ - 1} $)负责光曲线观察到的趋势。

We report the detection ($>4σ$) of a Quasi-Periodic Oscillation (QPO) in the $γ$-ray light curve of 3C 454.3 along with a simultaneous marginal QPO detection ($>2.4σ$) in the optical light curves. Periodic flux modulations were detected in both of these wavebands with a dominant period of $\sim 47$ days. The $γ$-ray QPO lasted for over 450 days (from MJD 56800 to 57250) resulting in over nine observed cycles which is among the highest number of periods ever detected in a blazar light curve. The optical light curve was not well sampled for almost half of the $γ$-ray QPO span due to the daytime transit of the source, which could explain the lower significance of the optical QPO. Autoregressive Integrated Moving Average (ARIMA) modelling of the light curve revealed a significant, exponentially decaying, trend in the light curve during the QPO, along with the $47$ days periodicity. We explore several physical models to explain the origin of this transient quasi-periodic modulation and the overall trend in the observed flux with a month-like period. These scenarios include a binary black hole system, a hotspot orbiting close to the innermost stable circular orbit of the supermassive black hole, and precessing jets. We conclude that the most likely scenario involves a region of enhanced emission moving helically inside a curved jet. The helical motion gives rise to the QPO and the curvature ($\sim 0.05^{\circ}$ pc$^{-1}$) of the jet is responsible for the observed trend in the light curve.

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