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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Exploring Chaos and Entanglement in the Henon-Heiles System Using Squeezed Coherent States
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Exploring Chaos and Entanglement in the Henon-Heiles System Using Squeezed Coherent States

机译:利用压缩相干态探索Henon-Heiles系统中的混沌和纠缠

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摘要

Quantum entanglement in the Henon-Heiles system is analyzed using the squeezed coherent state. Enhancement of quantum entanglement via squeezing is explored in connection with chaotic and regular dynamics of the system. It is found that the entanglement enhancement via squeezing is implicitly linked to the local structure of the classical phase-space and it shows a clear quantum-classical correspondence. In particular, the entanglement enhancement via squeezing is found to be negligible for a highly chaotic orbit compared to the regular and weakly chaotic orbits, and shows a clear correspondence to the degree of chaos present in the classical initial condition. We believe that these results might be useful to develop efficient strategies to enhance entanglement in quantum systems.
机译:使用压缩的相干态分析了Henon-Heiles系统中的量子纠缠。结合系统的混沌和规则动力学,探索了通过压缩来增强量子纠缠。发现通过压缩的纠缠增强与经典相空间的局部结构隐式链接,并且显示出清晰的量子-经典对应关系。特别是,与常规和弱混沌轨道相比,对于高度混沌的轨道,通过挤压进行的纠缠增强可忽略不计,并且与经典初始条件下的混沌程度存在明显的对应关系。我们认为,这些结果可能有助于开发有效的策略来增强量子系统中的纠缠。

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