论文标题

从2008年至2020年FSRQ B2 1633+382

Multiwavelength analysis and the C IV λ1549 Å emission line behavior from 2008 to 2020 of the FSRQ B2 1633+382

论文作者

Amaya-Almazán, Raúl Antonio, Chavushyan, Vahram, Patiño-Álvarez, Víctor Manuel

论文摘要

平面光谱无线电数量B2 1633+382(4C 38.41)已被监测几年,并在多个波长中呈现了相关的可变性。在本文中,我们正在对从伽马射线到无线电以及C IV $λ$1549Å的发射线和$λ$1350Å的连续体进行多个频率的分析。使用非热优势参数,我们将c IV和连续光曲线分开,何时连续源是积聚磁盘或射流。我们发现,延迟的相关性与磁盘发射统治的线和连续体之间的零相关性,表明非常小的宽线区域(BLR)。从15 GHz和Gamma射线之间的延迟开始,我们估计伽马射线排放区域从JET Apex的距离为$ \ sim $ 37 PC。当连续体和伽马射线在某些高活动周期中增加时,C IV通量会减小。 C IV曲线在其蓝色机翼中呈现一个较大的可变组件。 C IV和连续体的亮度之间的关系并不能完全遵循类星体样本的关系。我们的结果使我们提出了在喷气流方向上的BLR材料的流出,这是通过磁性重新连接的伽马射线产生,用于2011年中期的爆发事件,并且没有足够的BLR材料接近无线电芯即可轻松被非热连续体电离。

The flat-spectrum radio quasar B2 1633+382 (4C 38.41) has been monitored for several years and has presented correlated variability in multiple wavelengths. In this article, we are performing different analyses for multiple frequencies, from gamma-rays to radio, as well as, the C IV $λ$1549 Å emission line and the $λ$1350 Å continuum. Using the non-thermal dominance parameter, we separated the C IV and the continuum light curves for when the dominant source of continuum is the accretion disk or the jet. We found a correlation at a delay consistent with zero between the line and the continuum dominated by disk emission indicating a very small broad-line region (BLR). From the resulting delay between the 15 GHz and gamma-rays, we estimated the distance of the gamma-ray emission region from the jet apex to be $\sim$37 pc. The C IV flux decreases when the continuum and gamma-rays increase at some of the high activity periods. The C IV profile presents a larger variable component in its blue wing. The relation between the luminosities of C IV and the continuum does not completely follow the relation for a quasar sample. Our results lead us to propose an outflow of BLR material in the jet-flow direction, a gamma-ray production through magnetic reconnection for the flaring event of mid-2011, and that there is not enough BLR material close to the radio core to be easily ionized by the non-thermal continuum.

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