English

Generic Properties of Koopman Eigenfunctions for Stable Fixed Points and Periodic Orbits

Dynamical Systems 2021-07-07 v2 Optimization and Control

Abstract

Our recent work established existence and uniqueness results for Clock,α\mathcal{C}^{k,\alpha}_{\text{loc}} globally defined linearizing semiconjugacies for C1\mathcal{C}^1 flows having a globally attracting hyperbolic fixed point or periodic orbit (Kvalheim and Revzen, 2019). Applications include (i) improvements, such as uniqueness statements, for the Sternberg linearization and Floquet normal form theorems; (ii) results concerning the existence, uniqueness, classification, and convergence of various quantities appearing in the "applied Koopmanism" literature, such as principal eigenfunctions, isostables, and Laplace averages. In this work we give an exposition of some of these results, with an emphasis on the Koopmanism applications, and consider their broadness of applicability. In particular we show that, for "almost all" C\mathcal{C}^\infty flows having a globally attracting hyperbolic fixed point or periodic orbit, the C\mathcal{C}^\infty Koopman eigenfunctions can be completely classified, generalizing a result known for analytic systems. For such systems, every C\mathcal{C}^\infty eigenfunction is uniquely determined by its eigenvalue modulo scalar multiplication.

Keywords

Cite

@article{arxiv.2010.04008,
  title  = {Generic Properties of Koopman Eigenfunctions for Stable Fixed Points and Periodic Orbits},
  author = {Matthew D. Kvalheim and David Hong and Shai Revzen},
  journal= {arXiv preprint arXiv:2010.04008},
  year   = {2021}
}

Comments

Version accepted to MTNS

R2 v1 2026-06-23T19:10:31.697Z