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首页> 外文期刊>Cosmic research >Acceleration and Particle Transport in Collisionless Plasma in the Process of Dipolarization and Nonstationary Turbulence
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Acceleration and Particle Transport in Collisionless Plasma in the Process of Dipolarization and Nonstationary Turbulence

机译:极化和非平稳湍流过程中无碰撞等离子体的加速和粒子传输

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摘要

This work is devoted to studying the processes of the acceleration of plasma particles in thin current sheets that appear during magnetospheric substorms in the Earth's magnetosphere tail. A numerical model of magnetic dipolarization accompanied by plasma turbulence has been constructed and studied. The model allows one to investigate the particle acceleration due to the action of three principal mechanisms: (1) plasma turbulence; (2) magnetic dipolarization; (3) their simultaneous action. For the given velocity kappa-distributions, we obtained energy spectra of three types of accelerated particles, i.e., protons p (+), ions of oxygen O+, and electrons e (-). It has been shown that the combined mechanism of dipolarization with turbulence (3) makes the largest contribution to the increase in the energy of protons and heavy ions as compared with a separate action of each of mechanisms (1) and (2); in this case, electrons accelerate less. The consideration of the joint action of acceleration mechanisms (1) and (2) can explain the apparition of particles with energies on the order of magnitude equal to hundreds keV in the Earth's magnetosphere tail.
机译:这项工作致力于研究在地球磁层尾部的磁层亚暴期间出现的薄电流片中等离子体粒子加速的过程。建立并研究了伴随等离子体湍流的磁偶极极化的数值模型。该模型允许研究由于三个主要机理的作用而引起的粒子加速:(1)等离子体湍流; (2)磁双极化; (3)同时行动。对于给定的速度kappa分布,我们获得了三种类型的加速粒子的能谱,即质子p(+),氧O +的离子和电子e(-)。已经表明,与每个机理(1)和(2)的单独作用相比,偶极极化与湍流(3)的组合机理对质子和重离子能量的增加贡献最大。在这种情况下,电子的加速度较小。考虑到加速机制(1)和(2)的共同作用,可以解释在地球磁层尾巴中能量等于数百keV量级的粒子的出现。

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  • 来源
    《Cosmic research》 |2017年第6期|417-425|共9页
  • 作者单位

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

    Russian Acad Sci, Russian Space Res Inst, Moscow, Russia;

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