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低量子水平下的双稳性与混沌

Bistability and chaos at low levels of quanta.

作者信息

Gevorgyan T V, Shahinyan A R, Chew Lock Yue, Kryuchkyan G Yu

机构信息

Institute for Physical Research, National Academy of Sciences, Ashtarak-2, 0203 Ashtarak, Armenia.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Aug;88(2):022910. doi: 10.1103/PhysRevE.88.022910. Epub 2013 Aug 12.

Abstract

We study nonlinear phenomena of bistability and chaos at a level of few quanta. For this purpose, we consider a single-mode dissipative oscillator with strong Kerr nonlinearity with respect to the dissipation rate driven by a monochromatic force as well as by a train of Gaussian pulses. The quantum effects and decoherence in the oscillatory mode are investigated in the framework of the purity of states and the Wigner functions calculated from the master equation. We demonstrate the quantum chaotic regime by means of a comparison between the contour plots of the Wigner functions and the strange attractors on the classical Poincaré section. Considering bistability at a low limit of quanta, we analyze the minimal level of excitation numbers at which the bistable regime of the system is displayed. We also discuss the formation of an oscillatory chaotic regime by varying oscillatory excitation numbers at ranges of a few quanta. We demonstrate quantum-interference phenomena that are assisted hysteresis-cycle behavior and quantum chaos for the oscillator driven by a train of Gaussian pulses. We establish the border of quantum-classical correspondence for chaotic regimes in the case of strong nonlinearities.

摘要

我们在少数量子的层面上研究双稳态和混沌的非线性现象。为此,我们考虑一个单模耗散振荡器,它对于由单色力以及一串高斯脉冲驱动的耗散率具有强克尔非线性。在态的纯度和由主方程计算出的维格纳函数的框架内,研究振荡模式中的量子效应和退相干。我们通过比较维格纳函数的等高线图和经典庞加莱截面上的奇怪吸引子来展示量子混沌 regime。考虑量子低限下的双稳态,我们分析系统显示双稳态 regime 时的最小激发数水平。我们还讨论了在几个量子范围内通过改变振荡激发数来形成振荡混沌 regime。我们展示了由一串高斯脉冲驱动的振荡器的量子干涉现象,即辅助滞后循环行为和量子混沌。我们确定了强非线性情况下混沌 regime 的量子 - 经典对应边界。

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