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JOURNALS // Matematicheskie Zametki // Archive

Mat. Zametki, 2020 Volume 107, Issue 2, Pages 276–285 (Mi mzm12360)

This article is cited in 1 paper

A Morse Energy Function for Topological Flows with Finite Hyperbolic Chain Recurrent Sets

O. V. Pochinkaa, S. Kh. Zininaba

a National Research University "Higher School of Economics", Nizhny Novgorod Branch
b Ogarev Mordovia State University

Abstract: A Lyapunov function for a flow on a manifold is a continuous function which decreases along orbits outside the chain recurrent set and is constant on each chain component. By virtue of C. Conley's results, such a function exists for any flow generated by a continuous vector field; the very fact of its existence is known as the fundamental theorem of dynamical systems. If the set of critical points of a Lyapunov function coincides with the chain recurrent set of the flow, then this function is called an energy function. The paper considers topological flows with a finite hyperbolic (in the topological sense) chain recurrent set on closed surfaces. It is proved that any such flow has a (continuous) Morse energy function. The work is a conceptual continuation of that of S. Smale and K. Meyer, who proved the existence of a smooth Morse energy function for any gradient flow on a manifold.

Keywords: Lyapunov function, energy function, chain recurrent set.

UDC: 517

Received: 17.02.2019
Revised: 12.04.2019

DOI: 10.4213/mzm12360


 English version:
Mathematical Notes, 2020, 107:2, 313–321

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© Steklov Math. Inst. of RAS, 2024