首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >MAGNETIC ACCELERATION OF ULTRARELATIVISTIC GRB AND AGN JETS
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MAGNETIC ACCELERATION OF ULTRARELATIVISTIC GRB AND AGN JETS

机译:超相对论GRB和AGN射流的磁加速

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摘要

We present numerical simulations of cold, axisymmetric, magnetically driven relativistic outflows. The outflows are initially sub-Alfvenic and Poynting-flux dominated, with total-to-rest-mass energy flux ratio up to mu similar to 620. To study the magnetic acceleration of jets we simulate flows confined within a funnel with a rigid wall of prescribed shape, which we take to be z proportional to r(a) (in cylindrical coordinates, with a ranging from 1 to 2). This allows us to eliminate the numerical dissipative effects induced by a free boundary with an ambient medium. We find that in all cases they converge to a steady state characterized by a spatially extended acceleration region. For the jet solutions the acceleration process is very efficient - on the outermost scale of the simulation more than half of the Poynting flux has been converted into kinetic energy flux, and the terminal Lorentz factor approached its maximum possible value (Gamma(infinity) similar or equal to mu). The acceleration is accompanied by the collimation of magnetic field lines in excess of that dictated by the funnel shape. The numerical solutions are generally consistent with the semi-analytic self-similar jets solutions and the spatially extended acceleration observed in some astrophysical relativistic jets. In agreement with previous studies, we also find that the acceleration is significantly less effective for wind solutions suggesting that pulsar winds may remain Poynting dominated when they reach the termination shock.
机译:我们提供了冷,轴对称,磁驱动相对论流出的数值模拟。最初,流出量为亚Alfvenic流和Poynting通量为主,总静质量能通量比高达620,类似于620。为研究射流的磁加速度,我们模拟了受限于具有刚性壁的漏斗中的流规定形状,我们将其与r(a)成正比(在圆柱坐标系中,范围为1到2)。这使我们能够消除与环境介质的自由边界引起的数值耗散效应。我们发现,在所有情况下,它们都收敛到以空间扩展的加速区域为特征的稳态。对于射流解决方案,加速过程非常有效-在模拟的最外部,超过一半的珀因廷通量已转换为动能通量,并且最终的洛伦兹因子接近其最大可能值(伽玛(无穷大),近似或等于亩)。加速度伴随着磁场线的准直超过漏斗形状所指示的准直。数值解通常与半解析自相似射流解以及在某些天体相对论射流中观察到的空间扩展加速度一致。与以前的研究一致,我们还发现,加速对风解的效果明显较差,这表明脉冲星风在达到终止激波时可能仍以珀恩汀为主。

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