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A WIEN FIREBALL MODEL OF RELATIVISTIC OUTFLOWS IN AGNs

机译:AGN中相对论流出的WIEN火球模型

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摘要

A new mechanism for the production and acceleration of relativistic outflows in active galactic nuclei is presented. When copious pair production occurs in a hot accretion plasma, optically thin to absorption but optically thick to scattering, the free energy per electron or positron can exceed its rest mass. Then, if pairs can escape, they produce a powerful outflow of a large bulk Lorentz factor. We show analytically and numerically that this picture holds for spherically symmetric flows of pure pairs and radiation. We further simulate the generation process of a pair out flow from a hot plasma with normal proton-electron composition. Using a multifluid approximation and a Monte Carlo method of radiative transfer, we obtain spherically symmetric steady solutions of radiation and pair out flows, taking Coulomb friction into account. We show that a powerful and moderately relativistic flow is realized and discuss several possibilities to realize a highly relativistic flow.
机译:提出了一种新的机制,用于在活跃的银河核中产生和加速相对论性流出。当在热积聚等离子体中产生大量对时,从光学上薄到吸收,但光学上厚到散射,则每个电子或正电子的自由能会超过其静止质量。然后,如果货币对能够逃脱,它们就会产生大量的大量洛伦兹因子的强大流出。我们通过分析和数字显示,此图片适用于纯对和辐射的球对称流。我们进一步模拟了具有正常质子电子组成的热等离子体中成对流的产生过程。使用多流体近似和辐射转移的蒙特卡洛方法,我们获得了辐射的球对称稳态解,并在考虑库仑摩擦的情况下配对了流动。我们显示出实现了强大而适度的相对论流,并讨论了实现高度相对论流的几种可能性。

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