首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ion Trapping and Acceleration at Dipolarization Fronts: High-Resolution MHD and Test-Particle Simulations
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Ion Trapping and Acceleration at Dipolarization Fronts: High-Resolution MHD and Test-Particle Simulations

机译:在Dipolarization离子捕获和加速度问题:高分辨率磁流体动力和试验粒子模拟

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Much of plasma heating and transport from the magnetotail into the inner magnetosphere occurs in the form of mesoscale discrete injections associated with sharp dipolarizations of magnetic field (dipolarization fronts). In this paper we investigate the role of magnetic trapping in acceleration and transport of the plasma sheet ions into the ring current. For this purpose we use high-resolution global magnetohydrodynamic (MHD) and three-dimensional test-particle simulations. It is shown that trapping, produced by sharp magnetic field gradients at the interface between dipolarizations and the ambient plasma, affects plasma sheet protons with energies above approximately 10 keV, enabling their transport across more than 10 Earth radii and acceleration by a factor of 10. Our estimates show that trapping is important to the buildup of the ring current plasma pressure of injected particles; depending on the plasma sheet temperature and energy spectrum, trapped protons can contribute between 20% and 60% of the plasma pressure. It is also shown that the acceleration process does not conserve the particle first invariant; on average protons are accelerated to higher energies compared to a purely adiabatic process. We also investigate how trapping and energization vary for deferent ions species and show that in accordance with recent observations, ion acceleration is proportional to the ion charge and is independent of its mass.
机译:等离子体加热和运输磁尾进入磁层内部发生中尺度离散形式的注射与夏普dipolarizations磁字段(dipolarization方面)。研究磁捕获的角色等离子体的加速度和运输单离子进入环电流。利用高分辨率的全球磁流体动力(磁流体动力)和三维试验粒子模拟。大幅的磁场梯度dipolarizations和环境之间的接口等离子体,影响等离子体单质子能量高于大约10 keV能量,使他们的运输10多个地球半径和加速度的10倍。显示,捕获的积累是很重要的环电流等离子体注入的压力粒子;温度和能谱,困质子可以贡献在20%和60%之间的等离子体压力。过程不会首先保存粒子非变量;更高的能量而纯粹的绝热的过程。激发不同离子种类和不同依照最近的观察表明,离子加速离子成正比电荷和独立于它的质量。

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