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首页> 外文期刊>Physical review, E >Explosive death in nonlinear oscillators coupled by quorum sensing
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Explosive death in nonlinear oscillators coupled by quorum sensing

机译:非线性振荡器中的爆炸性死亡通过Quorum感应耦合

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Many biological and chemical systems exhibit collective behavior in response to the change in their population density. These elements or cells communicate with each other via dynamical agents or signaling molecules. In this work, we explore the dynamics of nonlinear oscillators, specifically Stuart-Landau oscillators and Rayleigh oscillators, interacting globally through dynamical agents in the surrounding environment modeled as a quorum sensing interaction. The system exhibits the typical continuous second-order transition from oscillatory state to death state, when the oscillation amplitude is small. However, interestingly, when the amplitude of oscillations is large we find that the system shows an abrupt transition from oscillatory to death state, a transition termed "explosive death." So the quorum-sensing form of interaction can induce the usual second-order transition, as well as sudden first-order transitions. Further, in the case of the explosive death transitions, the oscillatory state and the death state coexist over a range of coupling strengths near the transition point. This emergent regime of hysteresis widens with increasing strength of the mean-field feedback, and is relevant to hysteresis that is widely observed in biological, chemical, and physical processes.
机译:许多生物和化学系统表现出集体行为,以应对人口密度的变化。这些元素或细胞通过动态剂或信号分子彼此连通。在这项工作中,我们探讨了非线性振荡器,特别是Stuart-Landau振荡器和Rayleigh振荡器的动态,通过以Quorum感测相互作用建模的周围环境中的动态代理全球相互作用。当振荡幅度小时,系统从振荡状态表现出从振荡状态到死亡状态的典型连续二阶转变。然而,有趣的是,当振荡的振幅很大时,我们发现系统从振荡到死亡状态显示系统突然过渡,转型被称为“爆炸性死亡”。因此,仲裁的交互形式可以诱导通常的二阶转换,以及突然的一阶转换。此外,在爆炸性死亡转变的情况下,振荡状态和死亡状态在过渡点附近的一系列耦合强度上共存。这种滞后的紧急制度随着平均场反馈的增加而变宽,并且与在生物,化学和物理过程中广泛观察到的滞后相关。

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