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The incipit of complexity in self-coupled lasers (from deterministic behaviour to periodic oscillations and to chaos)

机译:自耦合激光器中的复杂性(从确定性行为到定期振荡和混乱)

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At the simplest level of implementation for an optical system, chaos and complexity are generated by the self-coupled laser configuration, when the field back-reflected from a remote target is allowed to re-enter the laser cavity. The delay of the go-and-return path is the parameter governing complexity, and together with the second-order cavity resonance and coupling of gain to amplitude and phase, gives rise to a number of characteristic phenomena at increasing coupling, such as perturbed deterministic behavior, onset of period-one and period-two bifurcations, and finally route to chaos. We present detailed results of the regimes found in a semiconductor laser subject to a minute (a few percent) back-reflection, as a function of strenght of coupling K, propagation delay, and alfa-factor (or linewidth broadening). The portrait of regimes in the K-? plane, where ?=2ks is the phase of the field returning from target distance sand k=2π/λ is the wavevector, starts with unperturbed and period-l bands to proceed, as distance s is increased, to zones of periodic regime sandwiched with increasing chaos bands, up to the point that all the K-? space is filled with chaos. Using the new results, we will revisit the Tchak and Chaprivly (T-C) diagram of self-coupling, that is commonly used to diagnose disturbance effects in laser diodes intended for optical fiber communications. We show that the T-C diagram unveils intricated overlap of regimes. We then conclude with a focus on the several applications of the high level dynamics to measurement of optical paths, cryptography for communication of sensible data, and to high speed random number generation for computer applications.
机译:在最简单的光学系统实现级别,当允许从远程目标反射的场反射到激光腔时,通过自耦合激光配置产生混乱和复杂性。远程返回路径的延迟是控制复杂性的参数,并且与二阶腔谐振和增益耦合以及幅度和相位的耦合在一起,导致耦合增加的许多特征现象,例如扰动的确定性行为,暂时和期间 - 两分的分叉,最后途及混乱。我们呈现在半导体激光器中发现的制度的详细结果,该制度在经过一分钟(几倍百分点)背反射,作为偶联k,传播延迟和植物因子(或线宽扩展)的体力的函数。 k-中制度的肖像?平面,其中?= 2ks是从目标距离返回的场的阶段返回砂k =2π/λ是波浪门,从未受到的开始,随着距离s增加,距离s的周期-1频段开始,到周期性的区域夹在一起增加混沌乐队,直到所有k-的点?空间充满了混乱。使用新结果,我们将重新审视自耦的TCHAK和Chaprivly(T-C)图,通常用于诊断用于光纤通信的激光二极管中的扰动效果。我们表明T-C图揭开了制度的复杂重叠。然后,我们的结论是侧重于高级动力学对光路测量的几个应用,用于通信的可明智数据的加密,以及用于计算机应用的高速随机数生成。

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