论文标题

Blazar OJ 287中黑孔盘撞击的HADRONIC发射模型

A hadronic emission model for black hole-disc impacts in the blazar OJ 287

论文作者

Rodríguez-Ramírez, J. C., Kushwaha, P., Pino, E. M. de Gouveia Dal, Santos-Lima, R.

论文摘要

在以前的著作中,已经调用了Blazar OJ 287核心中的超质量黑洞(SMBH)二进制,以解释其观察到的光耀斑准周期性。在这张照片之后,我们研究了该来源的2015年11月的主要光学耀斑的X射线和$γ$ ray的HADRONIC Origin。较轻的SMBH(次级)越过较重的积聚盘(主要)后,必须产生冲击流出。然后,我们考虑在冲击驱动的宇宙射线(CR)质子在膨胀时与主要SMBH的活性银河核(AGN)风相撞的冲击中的加速度。我们表明,这些CRS的排放可以通过2015年11月的Major Flare的光学组成部分自搭配X射线和$γ$ ray耀斑数据。派生的发射模型与发射区域中的磁场$ b \ sim 5 $ G是一致的,对于发射CRS的能量分布,$ q \ sim2.2 $的幂律索引。 AGN风的机械发光度代表了所有派生的发射轮廓中主要SMBH的质量积聚功率的$ \ lyssim 50 \%$。

A super-massive black hole (SMBH) binary in the core of the blazar OJ 287 has been invoked in previous works to explain its observed optical flare quasi-periodicity. Following this picture, we investigate a hadronic origin for the X-ray and $γ$-ray counterparts of the November 2015 major optical flare of this source. An impact outflow must result after the lighter SMBH (the secondary) crosses the accretion disc of the heavier one (the primary). We then consider acceleration of cosmic-ray (CR) protons in the shock driven by the impact outflow as it expands and collides with the active galactic nucleus (AGN) wind of the primary SMBH. We show that the emission of these CRs can reproduce the X-ray and $γ$-ray flare data self-consistently with the optical component of the November 2015 major flare. The derived emission models are consistent with a magnetic field $B \sim 5$ G in the emission region and a power-law index of $q\sim2.2$ for the energy distribution of the emitting CRs. The mechanical luminosity of the AGN wind represents $\lesssim 50\%$ of the mass accretion power of the primary SMBH in all the derived emission profiles.

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