Stationary relativistic jets

Serguei S Komissarov, Oliver Porth, Maxim Lyutikov
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引用次数: 17

Abstract

In this paper we describe a simple numerical approach which allows to study the structure of steady-state axisymmetric relativistic jets using one-dimensional time-dependent simulations. It is based on the fact that for narrow jets with \(v_{z}\approx c\) the steady-state equations of relativistic magnetohydrodynamics can be accurately approximated by the one-dimensional time-dependent equations after the substitution \(z=ct\). Since only the time-dependent codes are now publicly available this is a valuable and efficient alternative to the development of a high-specialised code for the time-independent equations. The approach is also much cheaper and more robust compared to the relaxation method. We tested this technique against numerical and analytical solutions found in literature as well as solutions we obtained using the relaxation method and found it sufficiently accurate. In the process, we discovered the reason for the failure of the self-similar analytical model of the jet reconfinement in relatively flat atmospheres and elucidated the nature of radial oscillations of steady-state jets.

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静止的相对论性射流
本文描述了一种简单的数值方法,该方法允许使用一维时间相关模拟来研究稳态轴对称相对论性射流的结构。这是基于这样一个事实,即对于具有\(v_{z}\approx c\)的窄射流,相对论磁流体力学的稳态方程可以用替换\(z=ct\)后的一维时变方程精确地近似。由于现在只有时间相关的代码是公开可用的,这是为时间无关方程开发高度专业化代码的有价值和有效的替代方案。与松弛法相比,这种方法也更便宜,更健壮。我们对文献中发现的数值解和解析解以及我们使用松弛法得到的解进行了测试,发现它足够准确。在此过程中,我们发现了相对平坦大气中射流再约束的自相似分析模型失效的原因,并阐明了稳态射流径向振荡的性质。
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