论文标题

垂直磁化无碰撞冲击的现场粒子相关分析:I。理论

A Field-Particle Correlation Analysis of a Perpendicular Magnetized Collisionless Shock: I. Theory

论文作者

Howes, Gregory G., Juno, James, TenBarge, Jason M., Wilson III, Lynn B., Caprioli, Damiano, Spitkovsky, Anatoly

论文摘要

通过不可逆地将传入的超音速等离子体流动转换为其他形式的能量,包括等离子体热,颗粒加速度和电磁场能量,在空间和天体物理等离子体中起着重要作用。在这里,我们介绍了现场粒子相关技术在理想化的垂直磁化无碰撞冲击中的应用,以通过冲击结构来理解能量从传入流到离子和电子能量的传递。粒子轨迹之后的拉格朗日视角之间的联系,观察颗粒分布的净能量的欧拉观点,阐明了能量传递机制。使用现场颗粒相关分析,我们确定了冲击脚中离子的冲击速度加速度的速度空间特征,以及通过冲击坡道加热绝热电子加热的速度空间特征。

Collisionless shocks play an important role in space and astrophysical plasmas by irreversibly converting the energy of the incoming supersonic plasma flows into other forms, including plasma heat, particle acceleration, and electromagnetic field energy. Here we present the application of the field-particle correlation technique to an idealized perpendicular magnetized collisionless shock to understand the transfer of energy from the incoming flow into ion and electron energy through the structure of the shock. The connection between a Lagrangian perspective following particle trajectories, and an Eulerian perspective observing the net energization of the distribution of particles, illuminates the energy transfer mechanisms. Using the field-particle correlation analysis, we identify the velocity-space signature of shock-drift acceleration of the ions in the shock foot, as well as the velocity-space signature of adiabatic electron heating through the shock ramp.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源