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On the peak level of tearing instability in an ion-scale current sheet: The effects of ion temperature anisotropy

机译:在离子级电流片的撕裂不稳定性的峰值水平上:离子温度各向异性的影响

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We have systematically surveyed the effects of the ion temperature anisotropy on the peak reconnected flux level of the tearing instability excited in a thick current sheet (its half-thickness D equal to the ion inertial length). A series of two- and three-dimensional (2-D and 3-D) simulations have been performed for a magnetotail-like situation, where the ion perpendicular temperature is fixed to balance the magnetic pressure of the lobe while the ion parallel temperature can be varied to give rise to the temperature anisotropy αi=T_(i.perp)/T_(j.para. Focusing on the behavior of the fastest growing mode (wavelength λ = 12D), the results are summarized as follows: (1) The peak levels are larger when the initial α_i is larger and lobe reconnection is obtained only when α_i > 1.5. (2) 3-D effects do speed-up the reconnection process but do not change the peak level substantially. (3) The time-scale of gas pressure build-up at the center of magnetic islands relative to the time-scale of reconnected flux growth is identified to be the key issue in determining the peak level. Based on these results for the fastest growing mode with λ = 12D, discussion is given on the larger-scale development, that is, what happens when longer wavelength modes are allowed to develop.
机译:我们已经系统地研究了离子温度各向异性对在厚电流片(其半厚度D等于离子惯性长度)中激发的撕裂不稳定性的峰值重新连接通量水平的影响。对于类似磁尾的情况,已经执行了一系列的二维和二维(2-D和3-D)仿真,其中固定了离子垂直温度以平衡波瓣的磁压力,而平行离子可以改变以引起温度各向异性αi= T_(i.perp)/ T_(j.para。)着眼于最快增长模式的行为(波长λ= 12D),结果总结如下:(1)当初始α_i较大时,峰值电平会更大,并且只有当α_i> 1.5时才能获得波瓣重新连接;(2)3-D效果确实加快了重新连接过程,但基本上没有改变峰值电平(3)时间相对于重新连接的磁通量增长的时间尺度,磁岛中心的气体压力建立的规模是确定峰值水平的关键问题,基于这些结果,λ= 12D的最快增长模式讨论了更大的发展,即发生了什么当允许开发更长的波长模式时。

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