Essential spectrum of the linearized 2D Euler equation and Lyapunov-Oseledets exponents
Mathematical Physics
2007-05-23 v1 math.MP
Spectral Theory
Abstract
The linear stability of a steady state solution of 2D Euler equations of an ideal fluid is being studied. We give an explicit geometric construction of approximate eigenfunctions for the linearized Euler operator in vorticity form acting on Sobolev spaces on two dimensional torus. We show that each nonzero Lyapunov-Oseledets exponent for the flow induced by the steady state contributes a vertical line to the essential spectrum of . Also, we compute the spectral and growth bounds for the group generated by via the maximal Lyapunov-Oseledets exponent. When the flow has arbitrarily long orbits, we show that the essential spectrum of on is the imaginary
Cite
@article{arxiv.math-ph/0306026,
title = {Essential spectrum of the linearized 2D Euler equation and Lyapunov-Oseledets exponents},
author = {Roman Shvydkoy and Yuri Latushkin},
journal= {arXiv preprint arXiv:math-ph/0306026},
year = {2007}
}
Comments
17 pages