Radiation-driven Origin of Dynamically Significant Magnetic Fields around Accretion Disks
辐射驱动的吸积盘动力学显著磁场起源
Magnetic fields play a central role in accretion physics around black holes (BHs), yet their physical origin within accretion flows remains an open problem. We investigate the generation and subsequent evolution of magnetic fields triggered by anisotropic radiation fields in BH accretion disks with compact rotating inner corona. We evolve the magnetic field using the generalized kinematic magnetic field evolution, including induction and Hall effects. The radiation field acts as a primary field generator, while azimuthal rotation in the magnetized plasma provides rapid amplification leading to magnetic-field strengths of order ∼10<SUP>8</SUP> G in the vicinity of a 10 M<SUB>⊙</SUB> BH, and accretion disk and corona emitting at Eddington limit. We show that this process is very fast: the generated magnetic fields exceed local equipartition estimates based on gas pressure within a viscous time scale. When vertical outflows are present, the amplified magnetic fields are advected outward. Our results demonstrate that radiation is not merely a passive component of accretion flows, but provides a robust and unavoidable trigger for the generation of dynamically significant magnetic fields. Furthermore, they provide a physically motivated pathway for the origin of large-scale, structured magnetic fields in and around accretion disks, without requiring magnetorotational-instability-driven turbulent amplification or externally advected magnetic flux. This mechanism offers a pathway toward magnetization of accretion disks and surrounding outflowing plasma without invoking externally supplied magnetic flux, and has broad implications for X-ray binaries, active galactic nuclei, and other transients such as gamma-ray bursts.
展开 ▾首次提出辐射场作为主动磁场发生器,而非被动成分;在爱丁顿吸积流中仅需黏滞时标便可超越气体分压,为吸积盘磁化提供自洽物理途径。
黑洞吸积盘磁场的起源长期以来是高能天体物理的开放问题。传统解释依赖磁旋转不稳定性驱动的湍流放大或外部磁通量注入,但种子磁场的产生机制仍不明确。本工作揭示各向异性辐射场可自然产生种子磁场,并在旋转等离子体中通过感应和霍尔效应快速放大,填补了自洽磁化机制的关键缺失。该机制有望整合到未来的全球数值模拟中,研究其在X射线双星态跃迁、活动星系核喷流形成及伽马暴中心引擎中的作用,并预测相应的偏振和时变特征。
接收 2026-06-16 · 刊出 2026-07-20 · 收录 2026-07-28