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Ghost Channels and Ghost Cycles Guiding Long Transients in Dynamical Systems

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posted on 2024-08-16, 15:38 authored by D Koch, A Nandan, G Ramesan, I Tyukin, Alexander GorbanAlexander Gorban, A Koseska
Dynamical descriptions and modeling of natural systems have generally focused on fixed points, with saddles and saddle-based phase-space objects such as heteroclinic channels or cycles being central concepts behind the emergence of quasistable long transients. Reliable and robust transient dynamics observed for real, inherently noisy systems is, however, not met by saddle-based dynamics, as demonstrated here. Generalizing the notion of ghost states, we provide a complementary framework that does not rely on the precise knowledge or existence of (un)stable fixed points, but rather on slow directed flows organized by ghost sets in ghost channels and ghost cycles. Moreover, we show that the appearance of these novel objects is an emergent property of a broad class of models typically used for description of natural systems.

History

Author affiliation

College of Science & Engineering Comp' & Math' Sciences

Version

  • AM (Accepted Manuscript)

Published in

Physical Review Letters

Volume

133

Issue

4

Publisher

American Physical Society (APS)

issn

0031-9007

eissn

1079-7114

Copyright date

2024

Available date

2024-08-16

Language

en

Deposited by

Professor Alexander Gorban

Deposit date

2024-08-12

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