首页> 外文期刊>Physica, D. Nonlinear phenomena >Spontaneous switching among multiple spatio-temporal patterns in three-oscillator systems constructed with oscillatory cells of true slime mold
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Spontaneous switching among multiple spatio-temporal patterns in three-oscillator systems constructed with oscillatory cells of true slime mold

机译:在具有真正粘液模的振动单元的三振子系统中,多个时空模式之间的自发切换

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Three-oscillator systems with plasmodia of true slime mold, Physarum polycephalum, which is an oscillatory amoeba-like unicellular organism, were experimentally constructed and their spatio-temporal patterns were investigated. Three typical spatio-temporal patterns were found: rotation (R), partial in-phase (PI), and partial anti-phase with double frequency (PA). In pattern R, phase differences between adjacent oscillators were almost 120 degrees. In pattern PI, two oscillators were in-phase and the third oscillator showed anti-phase against the two oscillators. In pattern PA, two oscillators showed anti-phase and the third oscillator showed frequency doubling oscillation with small amplitude. Actually each pattern is not perfectly stable but quasi-stable. Interestingly, the system shows spontaneous switching among the multiple quasi-stable patterns. Statistical analyses revealed a characteristic in the residence time of each pattern: the histograms seem to have Gamma-like distribution form but with a sharp peak and a tail on the side of long period. That suggests the attractor of this system has complex structure composed of at least three types of sub-attractors: a "Gamma attractor"-involved with several Poisson processes, a "deterministic attractor"-the residence time is deterministic, and a "stable attractor"-each pattern is stable. When the coupling strength was small, only the Gamma attractor was observed and switching behavior among patterns R, PI, and PA almost always via an asynchronous pattern named O. A conjecture is as follows: Internal/external noise exposes each pattern of R, PI, and PA coexisting around bifurcation points: That is observed as the Gamma attractor. As coupling strength increases, the deterministic attractor appears then followed by the stable attractor, always accompanied with the Gamma attractor. Switching behavior could be caused by regular existence of the Gamma attractor. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过实验构建了具有真正的粘液霉菌疟原虫多头cephal虫(Physarum polycephalum)的三振荡器系统,它是一种变形的变形虫类单细胞生物,并研究了它们的时空模式。发现了三种典型的时空模式:旋转(R),部分同相(PI)和部分双频(PA)。在模式R中,相邻振荡器之间的相位差几乎为120度。在模式PI中,两个振荡器同相,而第三个振荡器相对于两个振荡器显示反相。在模式PA中,两个振荡器显示反相,第三个振荡器显示小幅度的倍频振荡。实际上,每个模式都不是完全稳定的,而是准稳定的。有趣的是,系统显示了多个准稳定模式之间的自发切换。统计分析揭示了每种模式的停留时间的特征:直方图似乎具有伽马样的分布形式,但在长周期的一侧具有尖锐的峰和尾巴。这表明该系统的吸引子具有复杂的结构,该结构至少由三种类型的子吸引子组成:“伽马吸引子”(涉及多个泊松过程),“确定性吸引子”(驻留时间是确定性的)和“稳定吸引子” “-每个模式都是稳定的。当耦合强度较小时,仅观察到Gamma吸引子,并且几乎总是通过名为O的异步模式在模式R,PI和PA之间切换行为。一个推测如下:内部/外部噪声暴露了R,PI的每个模式,和PA在分叉点附近共存:被观察为Gamma吸引子。随着耦合强度的增加,确定性吸引子随即出现​​,随后是稳定吸引子,始终伴随着Gamma吸引子。转换行为可能是由Gamma吸引子的正常存在引起的。 (c)2006 Elsevier B.V.保留所有权利。

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