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首页> 外文期刊>Optics Letters >Photonic microwave time delay using slow- and fast-light effects in optically injected semiconductor lasers
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Photonic microwave time delay using slow- and fast-light effects in optically injected semiconductor lasers

机译:光子微波时间延迟使用光学注入的半导体激光器中的慢速和快速效果

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摘要

This study numerically and experimentally investigates a photonic approach for microwave time delay, which takes advantage of the redshift of the laser cavity resonance induced by external optical injection in a semiconductor laser. The strong enhancement around the redshifted cavity resonance not only amplifies the power, but also shifts the phase of the microwave signals carried by the optical injection. Such a microwave phase shift is approximately linear over a few gigahertz, leading to a constant microwave time delay over the frequency range. A different time delay can be achieved by simply adjusting the injection power or frequency. For the microwave frequencies up to 40 GHz investigated in this Letter, a continuously tunable range of more than 80 ps in time delay is achieved over an instantaneous bandwidth of approximately 7 GHz. The quality of the data carried by the microwave signals is mostly preserved after time delay. Thus, a bit-error ratio down to 10(-9) at 2.5 Gb/s is achieved with a possible detection sensitivity improvement of 5 dB. (C) 2017 Optical Society of America
机译:该研究在数值上和实验研究了微波时间延迟的光子方法,这利用了通过在半导体激光器中的外部光学喷射引起的激光腔共振的红移。围绕红星腔共振的强大增强不仅放大了功率,而且还改变了光学喷射所携带的微波信号的相位。这种微波相移在几个GigaHerTZ上近似线性,导致频率范围内的恒定微波延迟。通过简单地调整喷射功率或频率,可以实现不同的时间延迟。对于在这封信中调查的微波频率高达40 GHz,在瞬时带宽约为7 GHz的瞬时带宽,实现了超过80ps的连续调谐范围。微波信号携带的数据的质量主要在延迟之后保留。因此,通过5 dB的可能检测灵敏度提高实现了低于2.5GB / s的误码率下降至10(-9)。 (c)2017年光学学会

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