Proportional relations between the wave number and amplitude of spiral waves near Neimark-Sacker bifurcations

Bin Xu, Jian Gao, Chuansheng Shen
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Abstract

The spatiotemporal distribution patterns of interacting populations are broadly accepted as a pivotal factor in sustaining species diversity. Spiral waves represent common spatiotemporal patterns observed in ecosystems and biological systems, encompassing both continuoustime and discrete-time systems. The study of the dynamics and regulation of spiral waves in continuous-time systems, often observed in the vicinity of Hopf bifurcations, has been comprehensively examined. However, the dynamical characteristics and rules governing spiral waves near Hopf bifurcations in discrete-time systems, also named Neimark-Sacker bifurcations, are still not fully understood. Here, we investigate spiral waves in a discrete-time predator-pest model caused by a Neimark-Sacker bifurcation. Our results suggest a linear relationship between the amplitude and wave number of spiral waves near the Neimark-Sacker bifurcation. At last, we propose a model that can describe the behaviors of spiral waves in discrete-time systems near Neimark-Sacker bifurcations. Our findings illuminate the process of pattern formation in discrete-time systems, offering potential insights for forecasting and managing pest distribution.
Neimark-Sacker 分叉附近螺旋波的波数和振幅之间的比例关系
相互作用种群的时空分布模式被广泛认为是维持物种多样性的关键因素。螺旋波是在生态系统和生物系统中观察到的常见时空模式,既包括连续时间系统,也包括离散时间系统。在连续时间系统中,螺旋波的动力学和调控通常在霍普夫分岔附近观察到,对螺旋波的研究已进行了全面探讨。然而,离散时间系统中霍普夫分岔(也称为 Neimark-Sacker 分岔)附近的螺旋波的动力学特征和调控规则仍未得到充分了解。在这里,我们研究了离散时间捕食者-害虫模型中由 Neimark-Sacker 分岔引起的螺旋波。我们的研究结果表明,在 Neimark-Sacker 分岔附近,螺旋波的振幅和波数之间存在线性关系。最后,我们提出了一个可以描述离散时间系统在 Neimark-Sacker 分岔附近的螺旋波行为的模型。我们的发现阐明了离散时间系统中模式形成的过程,为预测和管理害虫分布提供了潜在的启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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