论文标题

从活性银河核的磁盘中散射伽马射线的出现源

The emergence of diffused Gamma-Ray Burst afterglows from the disks of Active Galactic Nuclei

论文作者

Wang, Yihan, Lazzati, Davide, Perna, Rosalba

论文摘要

活跃银河核(AGN)的磁盘已成为富含恒星和捕获恒星的环境以及它们留下的紧凑物体。这些恒星在死亡时会产生长长的伽马射线爆发(LGRB),而紧凑物体之间的频繁相互作用形成二进制中子星和中子星星孔二进制二进制,从而在合并后导致短grbs(SGRB)。预测这些瞬变从AGN磁盘的致密环境中出现时,它们是其适当识别的关键,并且可以更好地限制AGN磁盘中的恒星和紧凑的物体种群。这些瞬变中的一些看起来很不寻常,因为它们发生在比星际培养基高得多的密度上。其他是本文的主题,还将通过辐射扩散来修改,因为它们是在吸积盘的光学厚区域内产生的。在这里,我们计算了GRB余辉光曲线的扩散GRB源,用于代表性的中央黑洞质量和磁盘位置。我们发现,通过在AGN磁盘的致密培养基中的同步介质自动吸收可以强烈抑制从无线电到紫外线和软X射线的辐射。另外,光子扩散可以显着延迟发射峰的出现,将光束的快速瞬态转变为缓慢,各向同性和昏暗的瞬变。这些将显示为宽带相关的AGN变异性,在较高频率下的优势。它们的性质可以限制AGN磁盘中的恒星种群以及磁盘结构。

The disks of Active Galactic Nuclei (AGNs) have emerged as rich environments for the production and capture of stars and the compact objects that they leave behind. These stars produce long Gamma-Ray Bursts (LGRBs) at their deaths, while frequent interactions among compact objects form binary neutron stars and neutron star-black hole binaries, leading to short GRBs (SGRBs) upon their merger. Predicting the properties of these transients as they emerge from the dense environments of AGN disks is key to their proper identification and to better constrain the star and compact object population in AGN disks. Some of these transients would appear unusual because they take place in much higher densities than the interstellar medium. Others, which are the subject of this paper, would additionally be modified by radiation diffusion since they are generated within optically thick regions of the accretion disks. Here we compute the GRB afterglow light curves for diffused GRB sources for a representative variety of central black-hole masses and disk locations. We find that the radiation from radio to UV and soft X-rays can be strongly suppressed by synchrotron self-absorption in the dense medium of the AGN disk. In addition, photon diffusion can significantly delay the emergence of the emission peak, turning a beamed, fast transient into a slow, isotropic, and dimmer one. These would appear as broadband-correlated AGN variability with dominance at the higher frequencies. Their properties can constrain both the stellar populations within AGN disks as well as the disk structure.

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