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Merger and binary structure formation of two discrete vortices in a background vorticity distribution of a pure electron plasma

机译:纯电子等离子体的背景涡度分布中两个离散涡旋的合并和二元结构形成

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Observations have shown that two discrete vortices (clumps) immersed in a broad profile of background vorticity merge quickly or form a binary state that lasts for a long period. The different paths of the vortical evolution critically depend on slight differences in the initial background vorticity distribution (BGVD). By a fine control of the BGVD the asymptotic inter-clump distance is found to be a two-valued function of delzeta(b)/zeta(b)(2), where zeta(b) is the BGV at the initial location of the clumps, corresponding to the merger and the binary state. The multiplicity is removed by considering the degree of depletion of BGVD between two clumps at the time of their proximity in the initial phase. (C) 2003 American Institute of Physics. [References: 20]
机译:观测表明,浸没在背景涡旋的较宽轮廓中的两个离散涡旋(团块)会迅速合并或形成持续很长时间的二元状态。涡旋演化的不同路径主要取决于初始背景涡旋分布(BGVD)的细微差异。通过对BGVD的精细控制,发现渐近团簇间距离是delzeta(b)/ zeta(b)(2)的二值函数,其中zeta(b)是BGV在初始位置处的BGV。块,对应于合并和二进制状态。通过考虑两个团簇在初始阶段接近时BGVD的耗尽程度,可以消除多样性。 (C)2003美国物理研究所。 [参考:20]

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