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Detection of stochastic waves in plasma monolayer crystals from video images

机译:从视频图像中检测等离子体单层晶体中的随机波

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The motion of dust particles confined in plasma monolayer crystals is analyzed from video images, under conditions dominated by dust-neutral collisions. In these crystals, dust-neutral collisions will act as a random driving force, exciting phonons with a stochastic nature. The phonons are investigated using standard statistical tools, including both single- and multiparticle correlation functions. Single-particle correlations as obtained from the velocity autocorrelation function yield oscillations in a very narrow frequency band. Similar behaviors have previously been reported for strongly coupled one-component plasmas, and for trapped Brownian particles. Spatial correlations in the crystal lattice are studied from multiparticle correlation functions, suggesting an average wavelength slightly larger than the dimension of the crystal. Throughout the crystal, the dust velocity amplitude and polarization vary significantly, with the main variation in the radial direction out of the crystal center. This suggests the observed wave feature is a standing wave with a stochastic amplitude, dominated by its lowest eigenfrequency. (C) 2000 American Institute of Physics. [S1070-664X(00)00811-9]. [References: 30]
机译:在以灰尘中性碰撞为主导的条件下,从视频图像分析了限制在等离子体单层晶体中的灰尘颗粒的运动。在这些晶体中,中性尘埃碰撞将作为随机驱动力,激发具有随机性质的声子。使用标准统计工具(包括单粒子和多粒子相关函数)来研究声子。从速度自相关函数获得的单粒子相关会在非常窄的频带中产生振荡。对于强耦合的单组分等离子体和捕获的布朗粒子,以前已经报道过类似的行为。从多粒子相关函数研究了晶格中的空间相关性,表明平均波长略大于晶体的尺寸。在整个晶体中,粉尘的速度振幅和极化变化很大,径向方向的主要变化超出晶体中心。这表明观察到的波特征是具有随机振幅的驻波,其最低特征频率占主导地位。 (C)2000美国物理研究所。 [S1070-664X(00)00811-9]。 [参考:30]

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