Classification of linear skew-products of the complex plane and an affine route to fractalization

Publication date

2020-05-18T09:10:12Z

2020-07-31T05:10:29Z

2019-07

2020-05-18T09:10:13Z

Abstract

Linear skew products of the complex plane, \left.\begin{array}{l} \theta \mapsto \theta+\omega \\ z \mapsto a(\theta) z \end{array}\right\} where $\theta \in \mathrm{T}, z \in \mathbb{C}, \frac{\omega}{2 \pi}$ is irrational, and $\theta \mapsto a(\theta) \in \mathbb{C} \backslash\{0\}$ is a smooth map, appear naturally when linearizing dynamics around an invariant curve of a quasi-periodically forced complex map. In this paper we study linear and topological equivalence classes of such maps through conjugacies which preserve the skewed structure, relating them to the Lyapunov exponent and the winding number of $\theta \mapsto a(\theta) .$ We analyze the transition between these classes by considering one parameter families of linear skew products. Finally, we show that, under suitable conditions, an affine variation of the maps above has a non-reducible invariant curve that undergoes a fractalization process when the parameter goes to a critical value. This phenomenon of fractalization of invariant curves is known to happen in nonlinear skew products, but it is remarkable that it also occurs in simple systems as the ones we present.

Document Type

Article


Accepted version

Language

English

Publisher

American Institute of Mathematical Sciences (AIMS)

Related items

Versió postprint del document publicat a: https://doi.org/10.3934/dcds.2019153

Discrete and Continuous Dynamical Systems-Series A, 2019, vol. 39, num. 7, p. 3767-3787

https://doi.org/10.3934/dcds.2019153

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(c) American Institute of Mathematical Sciences (AIMS), 2019

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