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Photonic microwave amplification for radio-over-fiber links using period-one nonlinear dynamics of semiconductor lasers

机译:使用半导体激光器的周期一非线性动力学对光纤无线电链路进行光子微波放大

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摘要

For radio-over-fiber links, microwave-modulated optical carriers with high optical modulation depth are preferred because high optical modulation depth allows generation of high microwave power after photodetection, leading to high detection sensitivity, long transmission distance, and large link gain. This study investigates the period-one nonlinear dynamics of semiconductor lasers for optical modulation depth improvement to achieve photonic microwave amplification through modulation sideband enhancement. In our scheme, only typical semiconductor lasers are required as the amplification unit. The amplification is achieved for a broad microwave range, from less than 25 GHz to more than 60 GHz, and for a wide gain range, from less than 10 dB to more than 30 dB. The microwave phase quality is mainly preserved while the microwave power is largely amplified, improving the signal-to-noise ratio up to at least 25 dB. The bit-error ratio at 1.25 Gbits/s is better than 10~(-9), and a sensitivity improvement of up to at least 15 dB is feasible.
机译:对于光纤无线电链路,具有高光调制深度的微波调制光载波是优选的,因为高光调制深度可在光检测之后产生高微波功率,从而导致高检测灵敏度,长传输距离和大链路增益。本研究研究半导体激光器的周期一非线性动力学,以改善光调制深度,以通过调制边带增强来实现光子微波放大。在我们的方案中,仅需要典型的半导体激光器作为放大单元。对于从小于25 GHz到大于60 GHz的宽微波范围,以及从小于10 dB到大于30 dB的宽增益范围,都可以实现放大。微波相位质量主要在微波功率被放大的同时得以保留,从而将信噪比提高到至少25 dB。 1.25 Gbits / s的误码率优于10〜(-9),灵敏度至少提高15 dB是可行的。

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