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Nonlocal collisionless and collisional electron transport in low temperature plasmas

机译:低温等离子体中的非局部无碰撞和碰撞电子传输

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A distinctive property of partially ionized plasmas is that such plasmas are always in a non-equilibrium state: the electrons are not in thermal equilibrium with the neutral species and ions, and the electrons are also not in thermodynamic equilibrium within their own ensemble, which results in a significant departure of the electron velocity distribution function from a Maxwellian. These non-equilibrium conditions provide considerable freedom to choose optimal plasma parameters for applications, which make gas discharge plasmas remarkable tools for a variety of plasma applications, including plasma processing, discharge lighting, plasma propulsion, particle beam sources, and nanotechnology. Typical phenomena in such discharges include nonlocal electron kinetics, nonlocal electrodynamics with collisionless electron heating, and nonlinear processes in the sheaths and in the bounded plasmas. We report on recent advances in nonlocal electron kinetics in low-pressure plasmas, in the Hall thruster discharges1,2, and dc discharges with auxiliary biased electrodes for plasma control3. We show on specific examples that this progress was made possible by synergy between full scale particle-in-cell simulations, analytical models, and experiments.
机译:部分电离等离子体的一个显着特性是,此类等离子体始终处于非平衡状态:电子与中性物质和离子不处于热平衡状态,电子在它们自己的整体中也不处于热力学平衡状态,这导致电子速度分布函数明显不同于麦克斯韦方程。这些非平衡条件为选择最佳的等离子体参数提供了极大的自由,从而使气体放电等离子体成为各种等离子体应用(包括等离子体处理,放电照明,等离子体推进,粒子束源和纳米技术)的出色工具。这种放电的典型现象包括非局部电子动力学,具有无碰撞电子加热的非局部电动力学,以及鞘层和有界等离子体中的非线性过程。我们报告了低压等离子体,霍尔推进器放电 1,2 和带有辅助偏置电极的直流放电用于等离子体控制 3 的非局部电子动力学的最新进展。我们在特定的示例上显示,通过全面的单元格内粒子模拟,分析模型和实验之间的协同作用,使这一进展成为可能。

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