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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Interaction mechanisms between dust grains in the presence of asymmetric ion flow and an external magnetic field in complex plasma
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Interaction mechanisms between dust grains in the presence of asymmetric ion flow and an external magnetic field in complex plasma

机译:离子流不对称与复杂等离子体中外部磁场的相互作用

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摘要

We have reported a theoretical study on the interaction mechanism between dust particles in the presence of asymmetric ion flow and an external magnetic field in complex plasma. The recent experimental and numerical results on the particle-wake interaction ensures the dominance of the wake effect in the subsonic regime of plasma flow using the cold ion approximation. The recent developments in dusty plasma research and its growing interest towards more realistic magnetized dusty plasma scenarios also demand serious attention to study the wake effect both in the sub and supersonic regimes in the presence of a magnetic field. It is a challenging task to develop a correct, quantitative theory of wake potential for different regimes of magnetic field and ion flow velocity. Analytic expressions for the wake potential have been reported in this paper for both subsonic and supersonic regimes in the presence of an external magnetic field along with Debye-Hückel type potentials. The results show that the wake potential plays a dominant role in the subsonic regime and its strength increases with an increase in magnetic field. The behaviour of the wake potential is found to have an interesting effect on the Coulomb crystallization of dust grains and is studied with the help of molecular dynamic (MD) simulation.
机译:我们已经报道了在不对称离子流和复杂等离子体中外部磁场作用下尘埃颗粒之间相互作用机理的理论研究。最近关于粒子-尾流相互作用的实验和数值结果确保了在使用冷离子近似的等离子流亚音速状态下尾流效应的优势。尘埃等离子体研究的最新进展及其对更现实的磁化尘埃等离子体场景的兴趣日益增加,也需要认真研究在磁场存在下在亚声速和超音速状态下的尾流效应。对于不同的磁场和离子流速制度,开发正确,定量的唤醒电位理论是一项艰巨的任务。本文已经报道了在存在外部磁场以及Debye-Hückel型电位的情况下,亚音速和超音速状态的唤醒电位的解析表达式。结果表明,唤醒电势在亚音速状态下起主要作用,其强度随磁场的增加而增加。发现唤醒电势的行为对尘埃库仑结晶具有有趣的影响,并借助分子动力学(MD)模拟进行了研究。

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