Weicker Lionel, Erneux Thomas, Jacquot Maxime, Chembo Yanne, Larger Laurent
Université Libre de Bruxelles, Optique Nonlinéaire Théorique, Campus Plaine, Code Postal 231, 1050 Bruxelles, Belgium.
Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Feb;85(2 Pt 2):026206. doi: 10.1103/PhysRevE.85.026206. Epub 2012 Feb 7.
An electro-optic oscillator subject to two distinct delayed feedbacks has been designed to develop pronounced broadband chaotic output. Its route to chaos starts with regular pulsating gigahertz oscillations that we investigate both experimentally and theoretically. Of particular physical interest are the transitions to various crenelated fast time-periodic oscillations, prior to the onset of chaotic regimes. The two-delay problem is described mathematically by two coupled delay-differential equations, which we analyze by using multiple-time-scale methods. We show that the interplay of a large delay and a relatively small delay is responsible for the onset of fast oscillations modulated by a slowly varying square-wave envelope. As the bifurcation parameter progressively increases, this envelope undergoes a sequence of bifurcations that corresponds to successive fixed points of a sine map.
一种受两种不同延迟反馈作用的电光振荡器已被设计出来,用于产生明显的宽带混沌输出。其通向混沌的路径始于规则的脉动千兆赫兹振荡,我们对其进行了实验和理论研究。特别值得关注的是,在混沌状态开始之前,向各种锯齿状快速时间周期振荡的转变。双延迟问题由两个耦合的延迟微分方程进行数学描述,我们使用多时间尺度方法对其进行分析。我们表明,大延迟和相对小延迟的相互作用导致了由缓慢变化的方波包络调制的快速振荡的出现。随着分岔参数逐渐增加,这个包络经历了一系列分岔,这些分岔对应于正弦映射的连续不动点。