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Frequency-locked chaotic opto-RF oscillator

机译:锁频混沌光射频振荡器

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A driven opto-RF oscillator, consisting of a dual-frequency laser (DFL) submitted to frequency-shifted feedback, is experimentally and numerically studied in a chaotic regime. Precise control of the reinjection strength and detuning permits isolation of a parameter region of bounded-phase chaos, where the opto-RF oscillator is frequency-locked to the master oscillator, in spite of chaotic phase and intensity oscillations. Robust experimental evidence of this synchronization regime is found, and phase noise spectra allow us to compare phase-locking and bounded-phase chaos regimes. In particular, it is found that the long-term phase stability of the master oscillator is well transferred to the opto-RF oscillator, even in the chaotic regime. (C) 2016 Optical Society of America
机译:在混沌状态下,通过实验和数值研究了由双频激光器(DFL)组成的驱动式RF振荡器,该双频激光器接受了频移反馈。对再注入强度和失谐的精确控制允许隔离有界相位混沌的参数区域,尽管相位和强度发生振荡,但光电RF振荡器的频率锁定在主振荡器上。找到了这种同步状态的可靠实验证据,并且相位噪声谱使我们能够比较锁相和有界相位混沌状态。尤其是,发现即使在混沌状态下,主振荡器的长期相位稳定性也可以很好地转移到光电RF振荡器。 (C)2016美国眼镜学会

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