Theory of the negative differential conductivity of electrons due to electron-electron interaction in low-temperature plasma

R. V. Chiflikyan
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Abstract

The quantitative analysis of the mechanism of S- and N-type negative differential conductivity (NDC) of electrons in low-temperature plasma due to the electron-electron interaction (EEI) is presented. It is shown that EEI along with NDC of electrons can initiate the generation of high- frequency domains moving with velocities of the order drift velocity of electrons accompanied in some cases with the discontinuous constriction of positive columns of glow discharges. The estimations show that EEI can be displayed in a large number of gases and gas mixtures; comparisons with experiments and numerous simulations confirm the validity of the proposed theory. The use of powerful spectroscopic diagnostic methods is necessary for the tracing of dynamics excited species needed for elaboration of self-consistent description of NDC of electrons.
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低温等离子体中电子-电子相互作用引起的电子负微分电导率理论
本文定量分析了低温等离子体中电子-电子相互作用(EEI)导致电子S型和n型负微分电导率(NDC)的机理。结果表明,EEI和电子的NDC可以引发以电子的阶漂移速度运动的高频域的产生,并在某些情况下伴有辉光放电正极柱的不连续收缩。估算结果表明,EEI可以在大量气体和混合气体中表现出来;与实验和大量模拟的比较证实了所提出理论的有效性。使用强大的光谱诊断方法是必要的,以跟踪所需的动力学激发态,以阐述自一致的描述电子的NDC。
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