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Emergent long-range synchronization of oscillating ecological populations without external forcing described by Ising universality

机译:伊辛普适性描述了在没有外部强迫的情况下不断波动的生态种群的远程同步

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Understanding the synchronization of oscillations across space is fundamentally important to many scientific disciplines. In ecology, long-range synchronization of oscillations in spatial populations may elevate extinction risk and signal an impending catastrophe. The prevailing assumption is that synchronization on distances longer than the dispersal scale can only be due to environmental correlation (the Moran effect). In contrast, we show how long-range synchronization can emerge over distances much longer than the length scales of either dispersal or environmental correlation. In particular, we demonstrate that the transition from incoherence to long-range synchronization of two-cycle oscillations in noisy spatial population models is described by the Ising universality class of statistical physics. This result shows, in contrast to all previous work, how the Ising critical transition can emerge directly from the dynamics of ecological populations.
机译:了解跨空间振荡的同步性对许多科学学科至关重要。在生态学中,空间种群振荡的远程同步可能会增加物种灭绝的风险,并预示着即将来临的灾难。普遍的假设是,距离大于分散尺度的距离上的同步只能归因于环境相关性(莫兰效应)。相比之下,我们显示了远距离同步如何在比散布或环境相关的长度尺度长得多的距离上出现。特别是,我们证明了统计物理学的Ising通用性类别描述了在嘈杂的空间种群模型中两周期振荡从不相干向远程同步的过渡。与所有先前的工作相比,该结果表明,伊辛关键转变如何直接从生态种群的动态中出现。

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