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Relaxation of dusty plasmas in plasma crystals

机译:等离子体晶体中尘土等离子体的弛豫

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Relaxation phenomena in two-dimensional (2D) plasma crystals have been investigated, including both the self-consistent electric charge of dust particles and the electron and ion velocity distribution functions, by means of a modified 2D particle-in-cell (PIC) method. The results obtained show that the mutual interaction of dust particles in such crystals leads to special properties of the background electrons and ions due to their selective collection by dust particles during the relaxation. These electrons and ions can behave as nonideal components of dusty plasmas in plasma crystals even in cases where their numbers in the Debye cube are large. This effect is caused by their intensive charge exchange with dust particles: which provides dusty plasmas with the status of open statistical systems. The selective collection of electrons and ions by dust particles also causes their deviation from the initial equilibrium as well as the non-equilibrium evolution of the self-consistent electric charge of the dust particles. Relaxation phenomena in plasma crystals have to be taken into account in all cases of strong changes of plasma parameters, for example due to strong oscillations and waves in these crystals. [References: 14]
机译:通过改进的2D胞内颗粒(PIC)方法,研究了二维(2D)等离子体晶体中的弛豫现象,包括尘埃颗粒的自洽电荷以及电子和离子速度分布函数。所得结果表明,在这种晶体中,尘埃粒子之间的相互作用导致背景电子和离子的特殊性质,这是由于在松弛过程中尘埃粒子选择性地收集了它们。这些电子和离子即使在德拜立方体中的数量很多时,也可以充当等离子体晶体中尘土等离子体的非理想成分。产生这种效果的原因是它们与尘埃粒子进行了强烈的电荷交换:这为尘埃等离子体提供了开放统计系统的状态。尘埃粒子对电子和离子的选择性收集还会导致它们偏离初始平衡,以及尘埃粒子的自洽电荷的不平衡演变。在所有等离子体参数强烈变化的情况下,例如由于这些晶体中强烈的振荡和波动,都必须考虑等离子体晶体中的弛豫现象。 [参考:14]

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