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首页> 外文期刊>Physics Letters, A >ANGULAR MOMENTUM TRANSPORT ASSOCIATED WITH FINITE PLASMA TEMPERATURE IN ACCRETING DISKS
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ANGULAR MOMENTUM TRANSPORT ASSOCIATED WITH FINITE PLASMA TEMPERATURE IN ACCRETING DISKS

机译:吸盘中与有限等离子体温度相关的角动量运输

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摘要

A ''hot'' plasma mode that can be excited in a rotating Keplerian disk imbedded in a magnetic field with a significant toroidal component, is found analytically. This mode is shown to transport angular momentum outward, that is the primary requirement for the occurrence of mass accretion on the central object. The relevant distinctive feature is that the mode depends on the effects of the finite plasma compressibility and finite anisotropic ion longitudinal (relative to the field) viscosity and sound velocity; the driving factor of the relevant instability being the combination of the finite plasma temperature and the (negative) radial gradient of the rotation frequency. Electrostatic velocity gradient driven modes, in a plasma column with an axial magnetic field, that depend on the effects of a longitudinal viscosity or a viscous-like term, finite electron temperature and compressibility have been similarly predicted earlier and one of them has been experimentally confirmed recently by other authors. (C) 1997 Published by Elsevier Science B.V. [References: 17]
机译:通过分析发现可以在嵌入磁场的旋转开普勒圆盘中激发的“热”等离子体模式。该模式显示出向外部传输角动量,这是在中心物体上发生质量累积的主要条件。相关的显着特征是,模式取决于有限的等离子体可压缩性和有限的各向异性离子纵向(相对于场)粘度和声速的影响。相关不稳定性的驱动因素是有限的等离子体温度和旋转频率的(负)径向梯度的组合。在具有轴向磁场的等离子柱中,静电速度梯度驱动模式取决于纵向粘度或类似粘性项的作用,有限的电子温度和可压缩性已被较早地预测,并且其中一种已通过实验得到证实最近由其他作者撰写。 (C)1997年由Elsevier Science B.V.出版[参考文献:17]

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