Periodic traveling waves in Fermi–Pasta–Ulam type systems with nonlocal interaction on 2d-lattice

Author:

Bak S. M.,Kovtonyuk G. M.

Abstract

The paper deals with the Fermi--Pasta--Ulam type systems that describe an infinite systems of nonlinearly  coupled particles with nonlocal interaction on a two dimensional lattice. It is assumed that each particle interacts nonlinearly with several neighbors horizontally and vertically on both sides. The main result concerns the existence of traveling waves solutions with periodic relative displacement profiles. We obtain sufficient conditions for the existence of such solutions with the aid of critical point method and a suitable version of the Mountain Pass Theorem for functionals satisfying the Cerami condition instead of the Palais--Smale condition. We prove that under natural assumptions there exist monotone traveling waves.

Publisher

Ivan Franko National University of Lviv

Subject

General Mathematics

Reference22 articles.

1. S. Aubry, Breathers in nonlinear lattices: Existence, linear stability and quantization, Physica D, 103 (1997), 201–250.

2. S.M. Bak, Discrete infinite-dimensional Hamiltonian systems on a two-dimensional lattice, Doctor’s thesis, VSPU, Vinnytsia, 2020.

3. S.M. Bak, Existence of the solitary traveling waves for a system of nonlinearly coupled oscillators on the 2d-lattice, Ukr. Mat. J., 69 (2017), №4, 509–520.

4. S. Bak, Periodic traveling waves in the system of linearly coupled nonlinear oscillators on 2D lattice, Archivum Mathematicum, 58 (2022), №1, 1–13.

5. S. Bak, Periodic traveling waves in a system of nonlinearly coupled nonlinear oscillators on a twodimensional lattice, Acta Mathematica Universitatis Comenianae, 91 (2022), №3, 225–234.

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