论文标题

人口III微QuaSars驱动的赤道流出

Equatorial outflows driven by jets in Population III microquasars

论文作者

Checa, Pablo Sotomayor, Romero, Gustavo E., Bosch-Ramon, Valenti

论文摘要

当一个恒星倒入黑洞时,人口III的二元系统III可以演变为微Quasars。当紧凑型物体以大于爱丁顿速率的速率增值时,应形成强大辐射压力驱动的强大喷气机和风。我们研究了射流式形成区域以外的尺度上的人口III微QuaSar模型的喷气风系统的结构。使用相对论的流体动力模拟,我们发现射流和磁盘风之间的动力比决定了系统的配置。当动力以风为主导时,射流填充了一个狭窄的通道,这是由密集流出的准直。当射流主导系统的功率时,其一部分能量将转移到射流宽度时,将风转化为准赤道流。从模拟的结果来看,我们实施了准风风对二元系统大小尺度的影响的半分析计算。我们的结果表明,人口III微QuaSar可能会将伽马射线和相对论颗粒注入早期的层间培养基,从而有助于其与二元系统的大距离进行电离。

Binary systems of Population III can evolve to microquasars when one of the stars collapses into a black hole. When the compact object accretes matter at a rate greater than the Eddington rate, powerful jets and winds driven by strong radiation pressure should form. We investigate the structure of the jet-wind system for a model of Population III microquasar on scales beyond the jet-wind formation region. Using relativistic hydrodynamic simulations we find that the ratio of kinetic power between the jet and the disk wind determines the configuration of the system. When the power is dominated by the wind, the jet fills a narrow channel, collimated by the dense outflow. When the jet dominates the power of the system, part of its energy is diverted turning the wind into a quasi-equatorial flow, while the jet widens. From the results of our simulations, we implement semi-analytical calculations of the impact of the quasiequatorial wind on scales of the order of the size of the binary system. Our results indicate that Population III microquasars might inject gamma rays and relativistic particles into the early intergalactic medium, contributing to its reionization at large distances from the binary system.

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