Instituto de Ciencias Físicas, Universidad Nacional Autónoma de México, Cuernavaca 62210, Mexico.
Department of Solar Energy and Environmental Physics, Swiss Institute for Dryland Environmental and Energy Research, Blaustein Institutes for Desert Research (BIDR), Ben-Gurion University of the Negev, Sede Boqer Campus, 8499000 Midreshet Ben-Gurion, Israel.
Chaos. 2017 Apr;27(4):043110. doi: 10.1063/1.4981394.
A generic mechanism for the emergence of spatially localized states embedded in an oscillatory background is demonstrated by using a 2:1 frequency locking oscillatory system. The localization is of Turing type and appears in two space dimensions as a comb-like state in either π phase shifted Hopf oscillations or inside a spiral core. Specifically, the localized states appear in absence of the well known flip-flop dynamics (associated with collapsed homoclinic snaking) that is known to arise in the vicinity of Hopf-Turing bifurcation in one space dimension. Derivation and analysis of three Hopf-Turing amplitude equations in two space dimensions reveal a local dynamics pinning mechanism for Hopf fronts, which in turn allows the emergence of perpendicular (to the Hopf front) Turing states. The results are shown to agree well with the comb-like core size that forms inside spiral waves. In the context of 2:1 resonance, these localized states form outside the 2:1 resonance region and thus extend the frequency locking domain for spatially extended media, such as periodically driven Belousov-Zhabotinsky chemical reactions. Implications to chlorite-iodide-malonic-acid and shaken granular media are also addressed.
通过使用 2:1 频率锁定振荡系统,展示了一种在背景振荡中嵌入的空间局域化状态的通用产生机制。这种局域化是图灵类型的,在二维空间中表现为梳状状态,要么是在π相移的 Hopf 振荡中,要么是在螺旋核内部。具体来说,在不存在众所周知的翻转动力学(与一维空间中 Hopf-图灵分岔附近出现的崩溃同宿蛇行相关)的情况下,会出现局域化状态。在二维空间中推导出和分析三个 Hopf-图灵幅度方程,揭示了 Hopf 前沿的局部动力学固定机制,这反过来又允许出现垂直于 Hopf 前沿的图灵状态。结果与在螺旋波内部形成的梳状核大小吻合得很好。在 2:1 共振的情况下,这些局域化状态形成在 2:1 共振区域之外,从而扩展了空间扩展介质的频率锁定域,例如周期性驱动的 Belousov-Zhabotinsky 化学反应。还讨论了对亚氯酸盐-碘化物-丙二酸和振动颗粒介质的影响。