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Chaos and localization in the discrete nonlinear Schrödinger equation

Academic Article
Publication Date:
2021
abstract:
We analyze the chaotic dynamics of a one-dimensional discrete nonlinear Schrödinger equation. This nonintegrable model, ubiquitous in several fields of physics, describes the behavior of an array of coupled complex oscillators with a local nonlinear potential. We explore the Lyapunov spectrum for different values of the energy density, finding that the maximal value of the Kolmogorov-Sinai entropy is attained at infinite temperatures. Moreover, we revisit the dynamical freezing of relaxation to equilibrium, occurring when large localized states (discrete breathers) are superposed to a generic finite-temperature background. We show that the localized excitations induce a number of very small, yet not vanishing, Lyapunov exponents, which signal the presence of extremely long characteristic time-scales. We widen our analysis by computing the related Lyapunov covariant vectors, to investigate the interaction of a single breather with the various degrees of freedom.
Iris type:
01.01 Articolo in rivista
Keywords:
Discrete nonlinear Schrödinger equationDiscrete breathersLyapunov spectrumLyapunov covariant vectors
List of contributors:
Politi, Antonio; Iubini, Stefano
Authors of the University:
IUBINI STEFANO
Handle:
https://iris.cnr.it/handle/20.500.14243/397759
Published in:
CHAOS, SOLITONS AND FRACTALS
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S0960077921003088
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