Nosenko V, Goree J, Ma Z W, Dubin D H E, Piel A
Department of Physics and Astronomy, The University of Iowa, Iowa City, IA 52242, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Nov;68(5 Pt 2):056409. doi: 10.1103/PhysRevE.68.056409. Epub 2003 Nov 24.
Wakes composed of compressional and shear waves were studied experimentally in a two-dimensional screened-Coulomb crystal. Highly charged microspheres suspended in a plasma settled in a horizontal monolayer and arranged in a triangular lattice with a repulsive interparticle potential. Wakes were excited by a moving spot of Ar+ laser light. Depending on the laser spot speed, compressional waves formed a Mach cone and multiple lateral or transverse wakes, similar to ship wakes on the water surface, due to a combination of acoustic and dispersive properties. Shear waves, however, formed only a Mach cone, due to their nearly acoustic, i.e., dispersionless character. The experimental results show agreement with a recently developed theory and with molecular dynamics simulations, which assume a binary Yukawa interparticle potential. A generally useful method is presented for calculating the real part of the dispersion relation of the compressional waves based on the analysis of the spatial structure of a phonon wake. Fitting the resulting dispersion relation provides an independent measure of the interparticle potential, parametrized by the screening parameter kappa and particle charge Q.
在二维屏蔽库仑晶体中对由压缩波和剪切波组成的尾迹进行了实验研究。悬浮在等离子体中的高电荷微球沉降形成水平单层,并以具有排斥性粒子间势的三角晶格排列。通过移动的氩离子激光光斑激发尾迹。根据激光光斑速度,由于声学和色散特性的组合,压缩波形成马赫锥和多个横向或横向尾迹,类似于水面上的船尾迹。然而,剪切波由于其近乎声学的,即无色散的特性,仅形成马赫锥。实验结果与最近发展的理论以及分子动力学模拟一致,后者假设二元 Yukawa 粒子间势。基于对声子尾迹空间结构的分析,提出了一种计算压缩波色散关系实部的通用方法。对所得色散关系进行拟合提供了粒子间势的独立测量,该势由屏蔽参数 κ 和粒子电荷 Q 进行参数化。