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Spatial bistability: A source of complex dynamics. From spatiotemporal reaction-diffusion patterns to chemomechanical structures

机译:空间双稳态:复杂动态的来源。从时空反应扩散模式到化学机械结构

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We show experimentally and theoretically that reaction systems characterized by a slow induction period followed by a fast evolution to equilibrium can readily generate "spatial bistability" when operated in thin gel reactors diffusively fed from one side. This phenomenon which corresponds to the coexistence of two different stable steady states, not breaking the symmetry of the boundary conditions, can be at the origin of diverse reaction-diffusion instabilities. Using different chemical reactions, we show how stationary pulses, labyrinthine patterns or spatiotemporal oscillations can be generated. Beyond simple reaction-diffusion instabilities, we also demonstrate that the cross coupling of spatial bistability with the size responsiveness of a chemosensitive gel can give rise to autonomous spatiotemporal shape patterns, referred to as chemomechanical structures. (c) 2006 American Institute of Physics.
机译:我们从实验和理论上表明,当反应系统缓慢地从一侧扩散进料的薄凝胶反应器中运行时,其反应系统的特征在于诱导期较慢,然后迅速演变为平衡,可以很容易地产生“空间双稳性”。这种现象对应于两个不同的稳定稳态的共存,而没有破坏边界条件的对称性,这可能是各种反应扩散不稳定性的起源。使用不同的化学反应,我们展示了如何产生平稳的脉冲,迷宫式或时空振荡。除了简单的反应-扩散不稳定性之外,我们还证明了空间双稳性与化学敏感性凝胶的尺寸响应性的交叉偶联可以产生自主的时空形状模式,称为化学机械结构。 (c)2006年美国物理研究所。

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