首页> 外文期刊>Nonlinearity >Breakdown mechanisms of normally hyperbolic invariant manifolds in terms of unstable periodic orbits and homoclinic/heteroclinic orbits in Hamiltonian systems
【24h】

Breakdown mechanisms of normally hyperbolic invariant manifolds in terms of unstable periodic orbits and homoclinic/heteroclinic orbits in Hamiltonian systems

机译:关于哈密顿系统中的不稳定周期轨道和同斜/杂斜轨道的常双曲不变流形的分解机理

获取原文
获取原文并翻译 | 示例
           

摘要

We analyze the mechanism of breakdown of normally hyperbolic invariant manifolds (NHIMs) based on unstable periodic orbits, homoclinic and heteroclinic orbits in NHIMs for Hamiltonian systems. First, we classify the breakdown mechanism in terms of the characteristic multipliers (the eigenvalues of the phase space Jacobian matrix) of unstable periodic orbits in the NHIM and elucidate the classification for systems of three degrees of freedom. Second, we also present an index that provides a sufficient condition under which the NHIM ceases to exist in more global regions along the homoclinic and heteroclinic orbits in the NHIM. We demonstrate local and global features of the breakdown of the NHIM for a hydrogen atom in crossed electric and magnetic fields. Our analysis of unstable periodic orbits of shorter periods indicates that local features of the breakdown are highly inhomogeneous, depending on each periodic orbit. This manifests an inherent dynamical feature for systems of more than two degrees of freedom. Contrastingly, our analysis of homoclinic orbits indicates that the energy at which the NHIM breaks down does not depend on each homoclinic orbit. This result suggests the existence of a global breakdown of the NHIM behind these homoclinic orbits since these homoclinic orbits run through broader phase space regions.
机译:我们基于哈密顿系统中的NHIMs中的不稳定周期轨道,同斜和非斜轨道,分析了正常双曲不变流形(NHIMs)的分解机理。首先,我们根据NHIM中不稳定周期轨道的特征乘数(相空间雅可比矩阵的特征值)对击穿机理进行分类,并阐明了三自由度系统的分类。其次,我们还提出了一个索引,该索引提供了一个充分的条件,在该条件下,NHIM不再存在于沿NHIM的同斜和非斜轨道的更多全球区域中。我们展示了氢原子在交叉电场和磁场中NHIM分解的局部和全局特征。我们对较短周期的不稳定周期轨道的分析表明,击穿的局部特征高度不均匀,具体取决于每个周期轨道。对于超过两个自由度的系统,这表现出固有的动力学特性。相反,我们对同斜轨道的分析表明,NHIM分解的能量不取决于每个同斜轨道。这一结果表明,由于这些同斜轨道贯穿更宽的相空间区域,因此在这些同斜轨道之后存在着NHIM的整体分解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号