Relativistic simulations of superluminal sources

J.L. Gómez , J.M. Martí , A.P. Marscher , J.M. Ibáñez
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引用次数: 2

Abstract

We present numerical simulations of the radio emission from hydrodynamical relativistic jets. The quiescent-state jet emission consists of quasi-periodic knots of high emission, associated with internal recollimation shocks. Superluminal components can be reproduced by introducing a square-wave perturbation in the injection velocity of the jet. Strong interactions of the resulting moving shock and the standing recollimations result in a “drag” and increase in emission of the latter.

超光速光源的相对论模拟
我们提出了流体动力学相对论射流射电辐射的数值模拟。静态射流发射由高发射的准周期节组成,与内部再准直冲击有关。通过在射流的注入速度中引入方波扰动,可以再现超光速成分。由此产生的运动激波和静止再准直的强烈相互作用导致后者的“阻力”和发射增加。
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