Resonant interactions in the $α$-FPUT lattice with site-dependent coefficients

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Migliorelli, Lorenzo, Dematteis, Giovanni, Chibbaro, Sergio, Onorato, Miguel
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916041287794688
author Migliorelli, Lorenzo
Dematteis, Giovanni
Chibbaro, Sergio
Onorato, Miguel
author_facet Migliorelli, Lorenzo
Dematteis, Giovanni
Chibbaro, Sergio
Onorato, Miguel
contents The wave turbulence framework has proven to be an effective tool for analyzing certain features of nonlinear energy transfer in one-dimensional nonlinear chains. In this work, we extend this approach to the $α$-FPUT problem when the spring stiffness $χ$ and the nonlinear coefficient $α$ are site-dependent. Although three-wave interactions are non-resonant for constant coefficients, their spatial modulation gives rise to a non-trivial resonant manifold. In this framework, we derive a new kinetic equation that suggests the possibility of substantially faster thermalization with respect to the constant coefficient case. The new kinetic equation includes also an extra term that can be associated to the Bragg-scattering mechanism, which promotes the isotropization of the wave-action spectral density function.
format Preprint
id arxiv_https___arxiv_org_abs_2605_24268
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Resonant interactions in the $α$-FPUT lattice with site-dependent coefficients
Migliorelli, Lorenzo
Dematteis, Giovanni
Chibbaro, Sergio
Onorato, Miguel
Statistical Mechanics
Chaotic Dynamics
The wave turbulence framework has proven to be an effective tool for analyzing certain features of nonlinear energy transfer in one-dimensional nonlinear chains. In this work, we extend this approach to the $α$-FPUT problem when the spring stiffness $χ$ and the nonlinear coefficient $α$ are site-dependent. Although three-wave interactions are non-resonant for constant coefficients, their spatial modulation gives rise to a non-trivial resonant manifold. In this framework, we derive a new kinetic equation that suggests the possibility of substantially faster thermalization with respect to the constant coefficient case. The new kinetic equation includes also an extra term that can be associated to the Bragg-scattering mechanism, which promotes the isotropization of the wave-action spectral density function.
title Resonant interactions in the $α$-FPUT lattice with site-dependent coefficients
topic Statistical Mechanics
Chaotic Dynamics
url https://arxiv.org/abs/2605.24268