The symbiotic branching model: Duality and interfaces

J. Blath, Marcel Ortgiese
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引用次数: 1

Abstract

The symbiotic branching model describes the dynamics of a spatial two-type population, where locally particles branch at a rate given by the frequency of the other type combined with nearest-neighbour migration. This model generalizes various classic models in population dynamics, such as the stepping stone model and the mutually catalytic branching model. We are particularly interested in understanding the region of coexistence, i.e. the interface between the two types. In this chapter, we give an overview over our results that describe the dynamics of these interfaces at large scales. One of the reasons that this system is tractable is that it exhibits a rich duality theory. So at the same time, we take the opportunity to provide an introduction to the strength of duality methods in the context of spatial population models.
共生分支模型:对偶性和接口
共生分支模型描述了空间两型种群的动态,其中局部粒子分支的频率由另一种类型的频率结合最近邻迁移给出。该模型推广了种群动力学中的各种经典模型,如垫脚石模型和相互催化分支模型。我们特别感兴趣的是了解共存区域,即两种类型之间的界面。在本章中,我们概述了描述这些界面在大尺度上的动力学的结果。该系统易于处理的原因之一是它表现出丰富的对偶理论。同时,我们借此机会介绍了对偶方法在空间人口模型中的优势。
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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