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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >FORMATION OF RELATIVISTIC MHD JETS: STATIONARY STATE SOLUTIONS AND NUMERICAL SIMULATIONS
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FORMATION OF RELATIVISTIC MHD JETS: STATIONARY STATE SOLUTIONS AND NUMERICAL SIMULATIONS

机译:相对论MHD射流的形成:静止状态解和数值模拟

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We discuss numerical results of relativistic magnetohydrodynamic (MHD) jet formation models. We first review some examples of stationary state solutions treating the collimation and acceleration process of relativistic MHD jets. We provide an a posteriori check for the MHD condition in highly magnetized flows, namely the comparison of particle density to Goldreich-Julian density. Using the jet dynamical parameters calculated from the MHD model, we show the rest-frame thermal X-ray spectra of the jet, from which we derive the overall spectrum taking into account a variation of Doppler boosting and Doppler shift of emission lines along the outflow. Finally, we present preliminary results of relativistic MHD simulations of jet formation demonstrating the acceleration of a low velocity (0.01 c) disk wind to a collimated high velocity (0.8 c).
机译:我们讨论相对论磁流体动力学(MHD)射流形成模型的数值结果。我们首先回顾一些用于解决相对论MHD射流准直和加速过程的稳态解的例子。我们对高磁化流中的MHD条件进行了后验检验,即将颗粒密度与Goldreich-Julian密度进行比较。使用从MHD模型计算得到的射流动力学参数,我们显示了射流的其余帧热X射线光谱,从中我们得出了总光谱,其中考虑了沿流出方向的发射线的多普勒增强和多普勒偏移。最后,我们介绍了射流形成的相对论MHD模拟的初步结果,表明了低速(0.01 c)盘风向准高速(0.8 c)的加速。

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