Global bifurcation of homoclinic solutions

Iacopo P. Longo, Christian Pötzsche, Robert Skiba
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Abstract

In the analysis of parametrized nonautonomous evolutionary equations, bounded entire solutions are natural candidates for bifurcating objects. Appropriate explicit and sufficient conditions for such branchings, however, require to combine contemporary functional analytical methods from the abstract bifurcation theory for Fredholm operators with tools originating in dynamical systems. This paper establishes alternatives classifying the shape of global bifurcating branches of bounded entire solutions to Carath\'eodory differential equations. Our approach is based on the parity associated to a path of index 0 Fredholm operators, the global Evans function as a recent tool in nonautonomous bifurcation theory and suitable topologies on spaces of Carath\'eodory functions.
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同轴解的全局分岔
在分析参数化的非自治演化方程时,有界全解是分岔对象的自然候选。然而,这种分岔的适当显式和充分条件需要将弗雷德霍姆算子抽象分岔理论中的当代函数分析方法与源自动力学系统的工具相结合。本文建立了替代方法,对 Carath\'eodory 微分方程有界全解的全局分岔分支形状进行分类。我们的方法基于与指数为0的弗里德霍姆算子路径相关的奇偶性、作为非自治分岔理论最新工具的全局埃文斯函数以及卡拉索里函数空间上的适当拓扑。
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