Knotted toroidal sets, attractors and incompressible surfaces

Héctor Barge, J. J. Sánchez-Gabites
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Abstract

In this paper we give a complete characterization of those knotted toroidal sets that can be realized as attractors for discrete or continuous dynamical systems globally defined in \({\mathbb {R}}^3\). We also see that the techniques used to solve this problem can be used to give sufficient conditions to ensure that a wide class of subcompacta of \({\mathbb {R}}^3\) that are attractors for homeomorphisms must also be attractors for flows. In addition we study certain attractor-repeller decompositions of \({\mathbb {S}}^3\) which arise naturally when considering toroidal sets.

Abstract Image

结环集、吸引子和不可压缩曲面
在本文中,我们给出了那些结环集的完整特征,这些结环集可以作为全局定义在 \({\mathbb {R}}^3\) 中的离散或连续动力系统的吸引子来实现。我们还看到,用于解决这个问题的技术可以用来给出充分条件,以确保作为同构吸引子的\({\mathbb {R}}^3\) 的一大类子紧凑集也一定是流的吸引子。此外,我们还研究了在({\mathbb {S}}^3\ )环状集合中自然出现的某些吸引子-排斥子分解。
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