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High-order Schemes for Non-ideal 3 + 1 GRMHD: A Study of the Kinematic Dynamo Process in Accretion Tori

机译:非理想3 + 1 GRMHD的高阶方案:对Accretion Tori中的运动发电机过程的研究

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We present the first astrophysical application of the ECHO code in its recent version supplemented by a generalized Ohm law, namely a kinematic study of dynamo effects in thick accretion disks. High-order implicit-explicit Runge-Kutta time-stepping routines are implemented and validated within 3 + 1 General Relativistic MagnetoHydroDynamics (GRMHD). The scheme is applied to a differentially rotating torus orbiting a Kerr black hole, where the mean-field dynamo process leads to strong amplification of seed magnetic fields. We show that the interplay between the toroidal and poloidal components occurs qualitatively in the same fashion as in the Sun, butterfly diagrams are reproduced,and a typical time-scale for the field evolution is found, depending on the dynamo and resistivity numbers, which could explain periodicities as observed in several accreting systems.
机译:我们介绍了回声代码的第一个AstrophySical在其最近的版本中由广义欧姆法律补充说,即对厚增液盘中发电机效应的运动学研究。在3 + 1常规相对论磁力流体动力学(GRMHD)范围内实现和验证了高阶隐式显式Runge-Kutta时间步进例程。该方案应用于横向旋转的圆形孔,克尔黑洞,其中平均场发电机处理导致种子磁场的强大放大。我们表明,环形和块状部件之间的相互作用在与太阳中相同的方式定性地发生,蝴蝶图被再现,并且发现了场进化的典型时间尺度,具体取决于发电机和电阻率数,可以解释在几种增强系统中观察到的周期性。

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