Effective transport barriers in nontwist systems
Abstract
In fluids and plasmas with zonal flow reversed shear, a peculiar kind of transport barrier appears in the shearless region, one that is associated with a proper route of transition to chaos. Using a symplectic nontwist maps, which model such zonal flows, we investigate these barriers. In particular, the standard nontwist map, a paradigm of nontwist systems, is used to analyze the parameter dependence of the transport through a broken shearless barrier. Varying a proper control parameter, we identify the onset of structures with high stickiness that give rise to an effective barrier near the broken shearless curve. Several diagnostics are used: stickiness is measured by escape time and transmissivity plots, while barriers that separate different regions of stickiness are identified by employing two indicators in the phase space, the finite-time rotation number and the finite-time Lyapunov exponent.
Cite
@article{arxiv.1201.3549,
title = {Effective transport barriers in nontwist systems},
author = {J. D. Szezech and I. L. Caldas and S. R. Lopes and P. J. Morrison and R. L. Viana},
journal= {arXiv preprint arXiv:1201.3549},
year = {2015}
}
Comments
20 pages, 9 figures