论文标题
关于不稳定性在Blazar喷气机多波长发射特征中的作用的数值研究
A numerical study on the role of instabilities on multi-wavelength emission signatures of blazar jets
论文作者
论文摘要
Blazars是一类活跃的星系,其喷气机是相对论的,并且是直接沿着视线的等离子体流动的,并且容易发生一系列的磁性融化动力学(MHD)的稳定性。我们旨在研究辐射和颗粒加速过程的相互作用,以调节来自Blazars的多波段发射和可变性特征。特别是,目的是破译由于MHD不稳定性在推动Blazars的长期变量排放签名方面引起的冲击的影响。在这方面,我们对Blazar Jet的代表性部分进行了RMHD模拟。使用混合欧拉 - 拉格朗日框架进化该喷气机,以解释由于同步加速器过程和由于冲击而引起的颗粒加速度引起的辐射损失。此外,由于与Blazar相关的外部康普顿(EC)过程,我们已经合并并验证了辐射损失。我们进一步比较了通过2D平板射流的数值模拟不同辐射机制作为验证测试的影响。最后,我们进行了一项参数研究,以通过进行等离子体柱的3D模拟来量化磁场和外部辐射场特征的影响。分析合成光曲线和光谱能分布(SED),以定性地了解不稳定性驱动冲击的影响。我们观察到,随着不稳定性的演变产生的冲击会导致高能带中的耀斑特征。从SED的同步加速器组件的瞬时扁平化也可以明显看出这种冲击的影响。在后来的阶段,我们观察到X射线发射从同步子过程到由EC支配的跃迁。 EC工艺的包含还会引起伽马射线的发射,并显示出在低同步加速器峰峰值中通常看到的轻度康普顿优势的标志。
Blazars, a class of active galaxies whose jets are relativistic and collimated flows of plasma directed along the line of sight and are prone to a slew of magneto-hydrodynamic (MHD) instabilities. We aim to study the interplay of radiation and particle acceleration processes in regulating the multi-band emission and variability signatures from blazars. In particular, the goal is to decipher the impact of shocks arising due to MHD instabilities in driving the longterm variable emission signatures from blazars. In this regard, we have performed RMHD simulations of a representative section of blazar jet. The jet is evolved using a hybrid Eulerian-Lagrangian framework to account for radiative losses due to synchrotron process and particle acceleration due to shocks. Additionally, we have incorporated and validated radiative losses due to the external Compton (EC) process that are relevant for blazars. We have further compared the effects of different radiation mechanisms through numerical simulation of 2D slab jet as a validation test. Finally, we have carried out a parametric study to quantify the effect of magnetic fields and external radiation field characteristics by performing 3D simulations of a plasma column. The synthetic light curves and spectral energy distribution (SEDs) are analysed to qualitatively understand the impact of instability driven shocks. We observe that shocks produced with the evolution of instabilities give rise to flaring signatures in the high energy band. The impact of such shocks is also evident from the instantaneous flattening of the synchrotron component of the SEDs. At later stages, we observe the transition in X-ray emission from the synchrotron process to that dominated by EC. The inclusion of the EC process also gives rise to gamma-ray emission and shows signatures of mild Compton dominance as typically seen in Low Synchrotron Peaked blazars.