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Converging towards the optimal path to extinction

机译:走向灭绝的最佳路径

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摘要

Extinction appears ubiquitously in many fields, including chemical reactions, population biology, evolution and epidemiology. Even though extinction as a random process is a rare event, its occurrence is observed in large finite populations. Extinction occurs when fluctuations owing to random transitions act as an effective force that drives one or more components or species to vanish. Although there are many random paths to an extinct state, there is an optimal path that maximizes the probability to extinction. In this paper, we show that the optimal path is associated with the dynamical systems idea of having maximum sensitive dependence to initial conditions. Using the equivalence between the sensitive dependence and the path to extinction, we show that the dynamical systems picture of extinction evolves naturally towards the optimal path in several stochastic models of epidemics.
机译:灭绝现象在化学反应,种群生物学,进化和流行病学等许多领域无处不在。尽管作为一个随机过程而灭绝是罕见的事件,但在较大的有限种群中观察到了它的发生。当由于随机跃迁引起的波动充当驱使一个或多个组件或物种消失的有效力时,就会发生灭绝。尽管有许多通往灭绝状态的随机路径,但是有一条最佳路径可以使灭绝的可能性最大化。在本文中,我们证明了最佳路径与动力学系统的想法相关,该想法具有对初始条件的最大敏感依赖性。利用敏感性依赖与灭绝路径之间的等价关系,我们表明,在几种流行病的随机模型中,灭绝的动力学系统图自然朝着最佳路径发展。

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