Instituto de Fisica, Universidade de Sao Paulo, Sao Paulo, 05315-970 Sao Paulo, Brazil.
Chaos. 2009 Dec;19(4):043108. doi: 10.1063/1.3247349.
Nontwist systems, common in the dynamical descriptions of fluids and plasmas, possess a shearless curve with a concomitant transport barrier that eliminates or reduces chaotic transport, even after its breakdown. In order to investigate the transport properties of nontwist systems, we analyze the barrier escape time and barrier transmissivity for the standard nontwist map, a paradigm of such systems. We interpret the sensitive dependence of these quantities upon map parameters by investigating chaotic orbit stickiness and the associated role played by the dominant crossing of stable and unstable manifolds.
非扭曲系统在流体和等离子体的动力学描述中很常见,它们具有无剪切的曲线和伴随的输运屏障,可以消除或减少混沌输运,即使在其破坏后也是如此。为了研究非扭曲系统的输运性质,我们分析了标准非扭曲映射的屏障逃逸时间和屏障透射率,该映射是非扭曲系统的范例。我们通过研究混沌轨道粘性以及主导跨越稳定和不稳定流形所起的作用,解释了这些量对映射参数的敏感依赖性。