论文标题

与横向扩展的相对论喷气机的减速

Deceleration of relativistic jets with lateral expansion

论文作者

Lu, Wenbin, Beniamini, Paz, McDowell, Austin

论文摘要

我们提出了一个与圆环培养基(CSM)相互作用的相对论射流的流体动力学模型。震惊的CSM和喷气材料被认为处于无限薄的表面,因此原始的2D问题有效地减少到1D。根据一般保护定律,我们得出了沿该表面的每个流体元件的运动方程式,考虑到由于新近扫描的质量和横向膨胀而导致的压力梯度在切线方向上,沿表面正常的减速。冲击CSM的压力和能量密度是通过向前冲击下的跳跃条件给出的。该方法是通过有限差异数值方案以及在新代码$ \ mathtt {JEDI} $中实现的,以及从冲击加速电子中的同步加速器发射和吸收(用于“ JET DYNALICS”)。我们提供了许多测试用例,包括顶级射流,幂律结构喷射,“增强火球”的轮廓,以及在风终止冲击时密度跳跃的CSM。基于与其他分析和数值计算的一致性,我们得出的结论是,我们的简化方法为多种喷气结构和CSM密度曲线的流体动力学和余星发射提供了良好的近似值。从中子恒星合并中对余辉的有效建模将提供有关射流能量,CSM属性和视角的重要信息。

We present a model for the hydrodynamics of a relativistic jet interacting with the circum-stellar medium (CSM). The shocked CSM and the jet material are assumed to be in an infinitely thin surface, so the original 2D problem is effectively reduced to 1D. From general conservation laws, we derive the equation of motion for each fluid element along this surface, taking into account the deceleration along the surface normal due to newly swept-up mass and lateral expansion due to pressure gradient in the tangential direction. The pressure and energy density of the shocked CSM are given by the jump conditions at the forward shock. The method is implemented with a finite-differencing numerical scheme, along with calculation of synchrotron emission and absorption from shock-accelerated electrons, in a new code $\mathtt{Jedi}$ (for "jet dynamics"). We present a number of test cases, including top-hat jet, power-law structured jet, "boosted fireball" profile, and CSM with density jump at the wind termination shock. Based on the agreement with other analytical and numerical calculations, we conclude that our simplified method provides a good approximation for the hydrodynamics and afterglow emission for a wide variety of jet structures and CSM density profiles. Efficient modeling of the afterglow from e.g., neutron star mergers, will provide important information on the jet energetics, CSM properties, and the viewing angle.

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