Contents Online
Dynamics of Partial Differential Equations
Volume 13 (2016)
Number 1
Dedicated to emeritus associate editor Shiyi Chen
Synchronization in coupled second order in time infinite-dimensional models
Pages: 1 – 29
DOI: https://dx.doi.org/10.4310/DPDE.2016.v13.n1.a1
Author
Abstract
We study asymptotic synchronization at the level of global attractors in a class of coupled second order in time models which arises in dissipative wave and elastic structure dynamics. Under some conditions we prove that this synchronization arises in the infinite coupling intensity limit and show that for identical subsystems this phenomenon appears for finite intensities. Our argument involves a method based on “compensated” compactness and quasi-stability estimates. As an application we consider the nonlinear Kirchhoff, Karman and Berger plate models with different types of boundary conditions. Our results can be also applied to the nonlinear wave equations in an arbitrary dimension. We consider synchronization in sine-Gordon type models which describes distributed Josephson junctions.
Keywords
synchronization, wave dynamics, global attractor, upper semicontinuity
2010 Mathematics Subject Classification
34D06, 35B41, 37L30
Published 29 March 2016