论文标题
离子在倾斜冲击中的相空间能量
Phase Space Energization of Ions in Oblique Shocks
论文作者
论文摘要
与传统的散装能量诊断相比,由于相位空间中的大量数据,检查相位空间中动力学等离子体的能量是一个越来越多的主题。通过田间粒子相关(FPC)技术,并使用多种方法来整合等离子动力学方程,我们研究了离子在斜无碰撞冲击中的相空间中离子的能量。通过在相空间中进行此分析,我们提供的观点使我们能够表征有能量的离子的不同种群。特别是,我们专注于通过冲击船只加速反射多次冲击战线的离子,以及如何使用FPC技术在相空间中区分这些不同的反射种群。我们将分析进一步扩展到对经历更复杂动力学(例如冲击波动)的三维冲击的模拟,以证明在更一般的系统中恢复该能量过程的相位空间特征的能力。因此,这项工作将FPC技术的先前应用扩展到了更现实的无碰撞冲击环境,为该技术的仿真,实验室和航天器分析提供了更强有力的证据。
Examining energization of kinetic plasmas in phase space is a growing topic of interest, owing to the wealth of data in phase space compared to traditional bulk energization diagnostics. Via the field-particle correlation (FPC) technique and using multiple means of numerically integrating the plasma kinetic equation, we have studied the energization of ions in phase space within oblique collisionless shocks. The perspective afforded to us with this analysis in phase space allows us to characterize distinct populations of energized ions. In particular, we focus on ions which reflect multiple times off the shock front through shock-drift acceleration, and how to distinguish these different reflected populations in phase space using the FPC technique. We further extend our analysis to simulations of three-dimensional shocks undergoing more complicated dynamics, such as shock ripple, to demonstrate the ability to recover the phase space signatures of this energization process in a more general system. This work thus extends previous applications of the FPC technique to more realistic collisionless shock environments, providing stronger evidence of the technique's utility for simulation, laboratory, and spacecraft analysis.