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Spatiotemporal complexity of chaos in a phase-conjugate feedback laser system

机译:相位共轭反馈激光系统中混沌的时空复杂性

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摘要

An 852 nm semiconductor laser is experimentally subjected. to phase-conjugate time-delayed feedback achieved through four-wave mixing in a photorefractive (BaTiO3) crystal. Permutation entropy (PE) is used to uncover distinctive temporal signatures corresponding to the sub-harmonics of the round-trip time and the relaxation oscillations. Complex spatiotemporal outputs with high PE mostly upwards of similar to 0.85 and chaos bandwidth (BW) up to similar to 31 GHz are observed over feedback strengths up to 7%. The low-feedback region counterintuitively exhibits spatiotemporal reorganization, and the variation in the chaos BW is restricted within a small range of 1.66 GHz, marking the transition between the dynamics driven by the relaxation oscillations and the external cavity round-trip time. The immunity of the chaos BW and. the complexity against such spatiotemporal reorganization show promise as an excellent candidate for secure communication applications. (C) 2020 Optical Society of America
机译:通过实验进行852nm半导体激光器。通过在光反射(BATIO3)晶体中通过四波混合实现的相位缀合的时间延迟反馈。置换熵(PE)用于揭示与往返时间和弛豫振荡的子谐波相对应的独特时间签名。通过最高可达7%的反馈强度观察到高度高的PE的复杂时空输出大部分与0.85和混沌带宽(BW)相似,最高可达31 GHz。低反馈区域违反了时尚重组,并且混沌BW的变化受到1.66GHz的少量范围内的限制,标志着由松弛振荡驱动的动力学和外腔往返时间之间的过渡。混沌BW的免疫力。对如此时空重组的复杂性显示为安全通信应用的优秀候选者。 (c)2020美国光学学会

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