首页> 外文期刊>Journal of nonlinear science >Quorum Sensing in Populations of Spatially Extended Chaotic Oscillators Coupled Indirectly via a Heterogeneous Environment
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Quorum Sensing in Populations of Spatially Extended Chaotic Oscillators Coupled Indirectly via a Heterogeneous Environment

机译:空间延伸混沌振荡器群体的批量传感通过异构环境间接耦合

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Many biological and chemical systems could be modeled by a population of oscillators coupled indirectly via a dynamical environment. Essentially, the environment by which the individual element communicates with each other is heterogeneous. Nevertheless, most of previous works considered the homogeneous case only. Here we investigated the dynamical behaviors in a population of spatially distributed chaotic oscillators immersed in a heterogeneous environment. Various dynamical synchronization states (such as oscillation death, phase synchronization, and complete synchronized oscillation) as well as their transitions were explored. In particular, we uncovered a non-traditional quorum sensing transition: increasing the population density leaded to a transition from oscillation death to synchronized oscillation at first, but further increasing the density resulted in degeneration from complete synchronization to phase synchronization or even from phase synchronization to desynchronization. The underlying mechanism of this finding was attributed to the dual roles played by the population density. What's more, by treating the environment as another component of the oscillator, the full system was then effectively equivalent to a locally coupled system. This fact allowed us to utilize the master stability functions approach to predict the occurrence of complete synchronization oscillation, which agreed with that from the direct numerical integration of the system. The potential candidates for the experimental realization of our model were also discussed.
机译:许多生物和化学系统可以通过动态环境间接耦合的振荡器群体建模。基本上,各个元件彼此通信的环境是异构的。然而,以前的大多数作品仅考虑了同质案例。在这里,我们调查了浸入异质环境中的空间分布混沌振荡器群中的动态行为。探讨了各种动态同步状态(例如振荡死亡,相位同步和完整的同步振荡)以及其转换。特别地,我们发现了非传统的仲裁传感转变:增加人口密度从振荡死亡到首先从振荡死亡到同步振荡的过渡,但进一步增加了密度从完全同步到相位同步或甚至从相位同步产生退化。去同步。这种发现的基本机制归因于人口密度发挥的双重作用。更重要的是,通过将环境视为振荡器的另一个组件,然后将整个系统有效地等同于局部耦合的系统。这一事实允许我们利用主稳定功能方法来预测完全同步振荡的发生,这与系统的直接数值集成同意。还讨论了我们模型实验性实现的潜在候选人。

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