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Observation of submicron dust particles trapped in a diffused region of a low pressure radio frequency plasma

机译:观察被困在低压射频等离子体扩散区域中的亚微米灰尘颗粒

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Submicron dust particles (Cu, phi 50 nm) were observed to be trapped in an rf plasma at relatively low pressure. The laser light scattering by particles shows the time evolution of the dust particles for several hours after pulsed injection of the particles. The dust particles were localized in the diffused region as a large volume cloud. The suspension mechanism of the dust particles in the diffused plasma was explained by an electrostatic force due to the potential structure. The spatial distribution of the charge of the dust particles was determined by this potential structure. The dispersion relations of the self-excited dust acoustic waves were adopted to confirm the spatial distribution and the time evolution of the charge of the dust particles. (C) 2001 American Institute of Physics. [References: 24]
机译:观察到亚微米灰尘颗粒(Cu,phi 50 nm)在相对较低的压力下被捕获在射频等离子体中。被颗粒散射的激光显示了在脉冲注入颗粒后几个小时内灰尘颗粒的时间演变。灰尘颗粒以大体积的云状分布在扩散区域中。尘埃粒子在扩散的等离子体中的悬浮机理是由电位结构所产生的静电力来解释的。尘埃粒子的电荷的空间分布由该潜在结构确定。利用自激粉尘声波的色散关系确定粉尘颗粒电荷的空间分布和时间演化。 (C)2001美国物理研究所。 [参考:24]

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