相对论喷流中扭结驱动的磁重联:BL lac的x射线偏振测量的结果

G. Bodo, Fabrizo Tavecchio, L. Sironi
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引用次数: 21

摘要

通过研究磁主导等离子体柱中扭结不稳定性加速粒子的同步加速器极化特征,用相对论MHD模拟研究了BL Lac射流的耗散物理。扭结不稳定性的非线性阶段产生电流片,其中粒子可以通过磁重联有效地加速。我们将电流片识别为s = J d/B高于某个预定义阈值的区域(其中B为场强,J为电流密度,d为网格尺度),并假设粒子注入效率与电流的平方成正比。x射线发射粒子的冷却时间很短,因此它们只探测注入部位的场几何形状。相比之下,在光学波段中发射的粒子,我们在冷却时自洽地跟随它们从注入点传播出去,取样的体积更大,因此它们可能会产生不同的偏振特征。我们发现x射线和光学波段之间的极化程度大致相同,因为即使是发光粒子也不会远离注入它们的电流片,因为缺乏足够的扭结产生的湍流。由于x射线和光发射粒子探测的区域不同,两个波段的偏振角呈现出不同的时间演化。鉴于即将到来的IXPE卫星,我们的结果可以帮助约束扭结引起的重联(而不是冲击)是否可能是BL lac多波长发射的来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kink-driven magnetic reconnection in relativistic jets: consequences for X-ray polarimetry of BL Lacs
We investigate with relativistic MHD simulations the dissipation physics of BL Lac jets, by studying the synchrotron polarization signatures of particles accelerated by the kink instability in a magnetically-dominated plasma column. The nonlinear stage of the kink instability generates current sheets, where particles can be efficiently accelerated via magnetic reconnection. We identify current sheets as regions where s = J d/B is above some predefined threshold (where B is the field strength, J the current density and d the grid scale), and assume that the particle injection efficiency scales as proportional to the square of the current. X-ray emitting particles have short cooling times, so they only probe the field geometry of their injection sites. In contrast, particles emitting in the optical band, which we follow self-consistently as they propagate away from their injection sites while cooling, sample a larger volume, and so they may be expected to produce different polarimetric signatures. We find that the degree of polarization is roughly the same between X-ray and optical bands, because even the optical-emitting particles do not travel far from the current sheet where they were injected, due to lack of sufficient kink-generated turbulence. The polarization angle shows a different temporal evolution between the two bands, due to the different regions probed by X-ray and optical emitting particles. In view of the upcoming IXPE satellite, our results can help constrain whether kink-induced reconnection (as opposed to shocks) can be the source of multi-wavelength emission from BL Lacs.
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