论文标题

来自粒子中的粒子模拟的Kerr黑孔磁层活性的合成伽玛射线光曲线

Synthetic gamma-ray lightcurves of Kerr black-hole magnetospheric activity from particle-in-cell simulations

论文作者

Crinquand, Benjamin, Cerutti, Benoît, Dubus, Guillaume, Parfrey, Kyle, Philippov, Alexander

论文摘要

背景:活跃银河核非常高能辐射的超优化耀斑的起源仍然难以捉摸。磁层过程发生在中央黑洞的近距离附近,可以解释这些耀斑。 目的:我们旨在通过合成伽马射线光曲面来弥合模拟和观察结果之间的差距,以便使用动力学模拟来表征黑孔磁层的活性。 方法:我们对Kerr黑孔磁层进行全局轴对称二维一般偏移粒子模拟。我们包括对辐射过程和血浆供应的自洽处理,以及具有大规模赤道电流板的现实磁性构型。我们将粒子中的粒子代码与射线追踪算法相结合,以产生合成的光曲面。 结果:这些模拟显示出高度动态的磁层以及磁能的非常有效的耗散。发现磁通量的外部供应可将磁层保持在动态状态,否则磁层以准稳态的瓦尔德样构型沉降。消散的能量主要转化为伽马射线光子。低视角(面对面)的灯弯曲主要追踪火花隙活动并表现出较高的变异性。另一方面,在高视角(Edge-On)上找不到明显的可变性,其中主要贡献来自重新连接的电流表。 结论:我们观察到具有电流纸的黑孔磁层的特征是辐射效率很高。我们的模拟中耀斑的典型振幅低于活性银河核中检测到的幅度。这种耀斑可能是由于黑洞外部参数的变化而产生的

Context: The origin of ultra-rapid flares of very high-energy radiation from active galactic nuclei remains elusive. Magnetospheric processes, occurring in the close vicinity of the central black hole, could account for these flares. Aims: We aim to bridge the gap between simulations and observations by synthesizing gamma-ray lightcurves in order to characterize the activity of a black-hole magnetosphere, using kinetic simulations. Methods: We perform global axisymmetric two-dimensional general-relativistic particle-in-cell simulations of a Kerr black-hole magnetosphere. We include a self-consistent treatment of radiative processes and plasma supply, as well as a realistic magnetic configuration, with a large-scale equatorial current sheet. We couple our particle-in-cell code with a ray-tracing algorithm, in order to produce synthetic lightcurves. Results: These simulations show a highly dynamic magnetosphere, as well as very efficient dissipation of the magnetic energy. An external supply of magnetic flux is found to maintain the magnetosphere in a dynamic state, otherwise the magnetosphere settles in a quasi-steady Wald-like configuration. The dissipated energy is mostly converted to gamma-ray photons. The lightcurves at low viewing angle (face-on) mainly trace the spark gap activity and exhibit high variability. On the other hand, no significant variability is found at high viewing angle (edge-on), where the main contribution comes from the reconnecting current sheet. Conclusions: We observe that black-hole magnetospheres with a current sheet are characterized by a very high radiative efficiency. The typical amplitude of the flares in our simulations is lower than what is detected in active galactic nuclei. Such flares could result from the variation of parameters external to the black hole

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