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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Interaction of self-organized quasiparticles in a two-dimensional reaction-diffusion system: The formation of molecules
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Interaction of self-organized quasiparticles in a two-dimensional reaction-diffusion system: The formation of molecules

机译:自组织准粒子在二维反应扩散系统中的相互作用:分子的形成

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In two-dimensional reaction-diffusion systems localized, solitary structures, that we call self-organized quasiparticles or spots, can be found as stable and stationary solutions. Combinations of two or more spots can lead to rather complex patterns, that can be understood by treating them as particles. These particles can interact with the boundaries of the system as well as with each other in different ways, that depend essentially on the parameters of the system. The interaction can be described by an approximation based on the exponential decay of the spots apart from their centers. The calculations reduce the dynamics of the system to some equations for the velocities of the spots. In particular, there is a parameter range where the interaction of two spots oscillates with their distance, which gives rise to infinitely many bounded states, resembling molecules. Investigating more than two spots molecules of numerous shapes have been obtained. [References: 27]
机译:在二维反应扩散系统中,局部和孤立的结构(我们称为自组织准粒子或斑点)可以作为稳定和固定的解决方案。两个或多个斑点的组合会导致相当复杂的图案,可以通过将它们视为粒子来理解。这些粒子可以以不同的方式与系统的边界以及彼此交互,这主要取决于系统的参数。可以通过基于光斑远离中心的指数衰减来近似描述相互作用。这些计算将系统的动力学简化为一些关于斑点速度的方程式。特别是,存在一个参数范围,在该范围内,两个点的相互作用随其距离而振荡,从而产生了无限多个类似分子的有界态。已经研究了两个以上具有多种形状的斑点分子。 [参考:27]

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