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Dynamics of an N-vortex state at small distances

机译:小距离N涡态的动力学

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We investigate the dynamics of a state of N vortices, placed at the initial instant at small distances from some point, close to the "weight center" of vortices. The general solution of the time-dependent Ginsburg-Landau equation for N vortices in a large time interval is found. For N = 2, the position of the "weight center" of two vortices is time independent. For N ≥ 3, the position of the "weight center" weakly depends on time and is located in the range of the order of a 3, where a is a characteristic distance of a single vortex from the "weight center." For N = 3, the time evolution of the N-vortex state is fixed by the position of vortices at any time instant and by the values of two small parameters. For N ≥ 4, a new parameter arises in the problem, connected with relative increases in the number of decay modes.
机译:我们研究了N个涡流状态的动力学,该状态在初始瞬间放置在距某个点很短距离,靠近涡流“重心”的位置。找到了在较大时间间隔内N个涡旋的时间相关Ginsburg-Landau方程的一般解。对于N = 2,两个漩涡的“重心”位置与时间无关。对于N≥3,“重心”的位置在一定程度上取决于时间,并且位于3量级的范围内,其中a是距“重心”的单个涡旋的特征距离。对于N = 3,N涡旋状态的时间演化由任意时刻的涡旋位置和两个小参数的值固定。对于N≥4,问题中出现了一个新的参数,与衰减模式数量的相对增加有关。

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