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Experimental Studies of the Dynamics of Dust Grains in Gas-Discharge Plasmas

机译:气体放电等离子体中粉尘动力学的实验研究

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摘要

Results of the experimental studies of the dynamics of dust grains in the plasmas of an f capacitive discharge and a dc glow discharge are presented. The dusty plasma of a dc glow discharge was investigated in both ground-based experiments and experiments carried out under microgravity conditions (on board the Mir space station). The pair correlation function, temperature, and diffusion coefficient of dust grains are measured in a wide range of the dusty-plasma parameters. Dimensionless parameters responsible for the microscopic transport of dust-grains in a gas-discharge plasma are determined. A nonintrusive diagnostic technique for determining the dust-grain charges and screening lengths under the assumption of screened interaction between the grains is proposed. This technique is used to estimate the surface potential of dust grains of different size in a gas-discharge plasma.
机译:给出了f电容放电和dc辉光放电等离子体中尘粒动力学的实验研究结果。在地面实验和在微重力条件下(在和平号空间站上)进行的实验中,都研究了直流辉光放电的尘土等离子体。在广泛的尘埃等离子体参数中测量了尘埃颗粒的对相关函数,温度和扩散系数。确定了无因次参数,这些参数负责气体放电等离子体中尘粒的微观传输。提出了一种非侵入性的诊断技术,用于在假定颗粒之间存在相互作用的情况下确定粉尘电荷和筛分长度。该技术用于估计气体放电等离子体中不同尺寸的尘埃颗粒的表面电势。

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