论文标题

相对论喷气机中的纠结不稳定性可以驱动准周期辐射特征

Kink Instabilities In Relativistic Jets Can Drive Quasi-Periodic Radiation Signatures

论文作者

Dong, Lingyi, Zhang, Haocheng, Giannios, Dimitrios

论文摘要

相对论的喷气机是高度准直的等离子体流出,从积聚黑洞中出现。它们以大量的磁能发射,可以散发以加速非热颗粒,并在较大尺度下产生电磁辐射。纠结不稳定性可以是触发喷气磁能耗散的有效机制。尽管以前的作品研究了相对论喷气机中扭结不稳定性所需的条件,但尚未详细研究这些不稳定性的辐射特征。在本文中,我们旨在自言自语研究相对论喷气机中扭结不稳定性的辐射和极化特征。我们将大规模的相对论磁性水力动力学(RMHD)模拟与磁化射流的极化辐射转移相结合,该射流从中央发动机出现并通过周围的介质传播。我们观察到,射流中央脊柱的局部区域表现出最强的扭结不稳定性,我们将其确定为射流发射区域。有趣的是,我们发现在发射区的光曲线中发现了准周期性振荡(QPO)。另外,极化度似乎与光曲线中的耀斑相关。我们的分析表明,这些QPO签名在本质上是由扭结不稳定性驱动的。后者对应于Blazars的数周到数月的QPO。两极分化标志为QPO提供了独特的诊断,该QPO由扭结不稳定性驱动。

Relativistic jets are highly collimated plasma outflows emerging from accreting black holes. They are launched with a significant amount of magnetic energy, which can be dissipated to accelerate nonthermal particles and give rise to electromagnetic radiation at larger scales. Kink instabilities can be an efficient mechanism to trigger dissipation of jet magnetic energy. While previous works have studied the conditions required for the growth of kink instabilities in relativistic jets, the radiation signatures of these instabilities have not been investigated in detail. In this paper, we aim to self-consistently study radiation and polarization signatures from kink instabilities in relativistic jets. We combine large-scale relativistic magnetohydrodynamic (RMHD) simulations with polarized radiation transfer of a magnetized jet, which emerges from the central engine and propagates through the surrounding medium. We observe that a localized region at the central spine of the jet exhibits the strongest kink instabilities, which we identify as the jet emission region. Very interestingly, we find quasi-periodic oscillation (QPO) signatures in the light curve from the emission region. Additionally, the polarization degree appears to be anti-correlated to flares in the light curves. Our analyses show that these QPO signatures are intrinsically driven by kink instabilities, where the period of the QPOs is associated to the kink growth time scale. The latter corresponds to weeks to months QPOs in blazars. The polarization signatures offer unique diagnostics for QPOs driven by kink instabilities.

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