论文标题

超级精神活跃银核的中央区域的非热辐射

Nonthermal radiation from the central region of super-accreting active galactic nuclei

论文作者

Sotomayor, Pablo, Romero, Gustavo E.

论文摘要

尚不清楚具有高积聚率的活性银河核(AGN)中的无线电发射机制。已经提出,低功率喷气机可以解释在亚比sec尺度下观察到的辐射。但是,以超级伊德丁顿速率形成的机制尚不清楚。在相同的尺度上,云层区域(BLR)在积聚磁盘发射的风速中以超音速速度传播的云可能会导致非热辐射的产生。我们的目的是表征通过超级振动AGN中积聚磁盘的云传播产生的非热发射,并估算了这种贡献与电磁频谱无线电带的相关性。我们确定当沉浸在积聚磁盘的强风中时,BLR云不会被冲击或流体动力学不稳定性破坏的条件。这些云形成弓箭,是适合颗粒加速的位点。我们开发了一个半分析模型,以计算这些弓箭中相对论颗粒的分布以及发射辐射的相关光谱分布(SED)。对于超级良好AGN的典型参数,我们发现云的相互作用会产生从无线电到几十teV的非热发射,如果这些过程发生在风光球之外,则会产生轻微的吸收效果。如果积聚率是超级 - 埃德丁顿,则可以解释没有喷气机的AGN中的无线电发射,并且在中央黑洞周围的尺度下有一个宽线区域。积聚率不得很高,因此大多数云轨道在风光球之外,并且辐射可以逸出到观察者。

The radio emission mechanism in active galactic nuclei (AGN) with high accretion rates is unclear. It has been suggested that low-power jets may explain the observed radiation at sub-parsec scales. The mechanisms for jet formation at super-Eddington rates, however, are not well understood. On the same scale, clouds from the broad-line region (BLR) propagating with supersonic velocities in the wind launched by the accretion disk may lead to the production of nonthermal radiation. We aim to characterize the nonthermal emission produced by the propagation of clouds through the wind of the accretion disk in super-accreting AGNs and to estimate the relevance of such contribution to the radio band of the electromagnetic spectrum. We determine the conditions under which the BLR clouds are not destroyed by shocks or hydrodynamic instabilities when immersed in the powerful wind of the accretion disk. These clouds form bowshocks that are suitable sites for particle acceleration. We develop a semianalytical model to calculate the distribution of relativistic particles in these bowshocks and the associated spectral energy distribution (SED) of the emitted radiation. For typical parameters of super-accreting AGNs, we find that the cloud-wind interactions can produce nonthermal emission from radio up to a few tens of TeV, with slight absorption effects, if the processes occur outside the wind photosphere. Radio emission in AGNs without jets can be explained if the accretion rate is super-Eddington and there is a broad-line region at sub-parsec scales around the central black hole. The accretion rate must not be extremely high so most of the clouds orbit outside of the wind photosphere and the radiation can escape to the observer.

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