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具有速度剪切的非均匀结构中等离子体输运的竞争机制:太阳风与地球磁层的相互作用。

Competing mechanisms of plasma transport in inhomogeneous configurations with velocity shear: the solar-wind interaction with earth's magnetosphere.

作者信息

Faganello M, Califano F, Pegoraro F

机构信息

Physics Department, University of Pisa, Pisa, Italy.

出版信息

Phys Rev Lett. 2008 Jan 11;100(1):015001. doi: 10.1103/PhysRevLett.100.015001. Epub 2008 Jan 10.

Abstract

Two-dimensional simulations of the Kelvin-Helmholtz instability in an inhomogeneous compressible plasma with a density gradient show that, in a transverse magnetic field configuration, the vortex pairing process and the Rayleigh-Taylor secondary instability compete during the nonlinear evolution of the vortices. Two different regimes exist depending on the value of the density jump across the velocity shear layer. These regimes have different physical signatures that can be crucial for the interpretation of satellite data of the interaction of the solar wind with the magnetospheric plasma.

摘要

对具有密度梯度的非均匀可压缩等离子体中开尔文 - 亥姆霍兹不稳定性的二维模拟表明,在横向磁场配置下,涡旋配对过程和瑞利 - 泰勒二次不稳定性在涡旋的非线性演化过程中相互竞争。根据速度剪切层两侧密度跃变的值,存在两种不同的状态。这些状态具有不同的物理特征,这对于解释太阳风与磁层等离子体相互作用的卫星数据可能至关重要。

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