论文标题

开尔文 - 螺旋尔兹不稳定性的数值研究及其对磁化射流的合成发射的影响

Numerical study of Kelvin-Helmholtz instability and its impact on synthetic emission from magnetized jets

论文作者

Borse, Nikhil, Acharya, Sriyasriti, Vaidya, Bhargav, Mukherjee, Dipanjan, Bodo, Gianluigi, Rossi, Paola, Mignone, Andrea

论文摘要

活性银河核(AGN)喷气机的非热发射延伸到大尺度,因为它们容易发生磁性磁通动力不稳定性。这项研究的主要重点是了解MHD不稳定性对大型AGN喷气机的非热发射的影响。我们对等离子体柱进行高分辨率的三维数值磁磁动力模拟,以研究具有不同磁场曲线,喷射速度和密度对比度的千 - Parsec尺度下喷气构型的动力学和发射特性。我们还使用假定静态粒子光谱的方法获得了不同视角的合成非热发射特征,并通过使用拉格朗日宏观粒子在粒子光谱中获得静态粒子光谱,从而结合了冲击加速度和辐射损失的效果。我们发现,轴向磁场构型中开尔文 - 螺旋(KH)不稳定性引起的冲击会强烈影响射流动力学。此外,我们还发现在低密度的喷射柱中存在弱的双色冲击。包含螺旋磁场会阻碍剪切表面的涡流生长,从而稳定射流柱。通过不断发展的粒子光谱方法,对于具有强kH不稳定性的病例获得的合成SED表明,存在从无线电到TEV伽马射线带的多个驼峰。我们得出的结论是,由于KH不稳定性,高能电子在新鲜形成的冲击附近加速,导致X射线发射高。

Non-thermal emission from Active Galactic Nuclei (AGN) jets extends up-to large scales in-spite of them being prone to a slew of magneto-hydrodynamic instabilities. The main focus of this study is to understand the impact of MHD instabilities on the non-thermal emission from large-scale AGN jets. We perform high-resolution three-dimensional numerical magneto-hydrodynamic simulations of a plasma column to investigate the dynamical and emission properties of jet configurations at kilo-parsec scales with different magnetic field profiles, jet speeds, and density contrast. We also obtain synthetic non-thermal emission signatures for different viewing angles using an approach that assumes static particle spectra and that obtained by evolving the particle spectra using Lagrangian macro-particles incorporating the effects of shock acceleration and radiative losses. We find that the shocks due to Kelvin-Helmholtz (KH) instability in the axial magnetic field configurations can strongly affect the jet dynamics. Additionally, we also find the presence of weak biconical shocks in the under-dense jet columns. The inclusion of a helical magnetic field hinders the vortex growth at the shear surface thereby stabilizing the jet column. With the evolving particle spectra approach, the synthetic SEDs obtained for cases with strong KH instability show the presence of multiple humps ranging from radio to TeV gamma-ray band. We conclude that the high-energy electrons accelerated in the vicinity of freshly formed shocks due to KH instability, result in high X-ray emission.

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