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Antimonotonicity and maximal complexity in optically injected two-section lasers

机译:光学注入两段激光器的反单调性和最大复杂度

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摘要

In this paper, we investigate some special dynamic characteristics of two-section semiconductor lasers subject to optical injection. Forward and reverse period-doubling cascades are presented in the parameter space of frequency detuning /spl omega/ and injection strength K, a phenomenon known as antimonotonicity. Furthermore, we investigate the Kaplan-Yorke dimension (D/sub KY/) and the largest Lyapunov exponent (LLE) of chaotic attractors in this laser setup. It is found that the latter is a dynamical system that can possess a dimension D/sub KY/ anywhere between 2 and close to 4 as the control and material parameters are varied, making it the most complex laser setup using optical injection. Finally, the criteria for achieving a high LLE and a high D/sub KY/ are examined (by varying all possible material and control parameters) and presented with potential applications to chaotic communications.
机译:在本文中,我们研究了受光注入作用的两部分半导体激光器的一些特殊动态特性。在频率失谐/ spl omega /和注入强度K的参数空间中出现了正向和反向周期加倍级联,这种现象称为反单调性。此外,我们研究了这种激光装置中混沌吸引子的Kaplan-Yorke尺寸(D / sub KY /)和最大Lyapunov指数(LLE)。发现后者是一个动态系统,随着控制参数和材料参数的变化,D / sub KY /的尺寸可以在2到4之间,这使它成为使用光学注入的最复杂的激光装置。最后,检查了实现高LLE和高D / sub KY /的标准(通过改变所有可能的材料和控制参数),并提出了在混沌通信中的潜在应用。

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