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Microwave phase shifter with controllable power response based on slow- and fast-light effects in semiconductor optical amplifiers

机译:基于半导体光放大器中基于慢光和快光效应的功率可控的微波移相器

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摘要

We suggest and experimentally demonstrate a method for increasing the tunable rf phase shift of semiconductor waveguides while at the same time enabling control of the rf power. This method is based on the use of slow- and fast-light effects in a cascade of semiconductor optical amplifiers combined with the use of spectral filtering to enhance the role of refractive index dynamics. A continuously tunable phase shift of approx240 deg at a microwave frequency of 19 GHz is demonstrated in a cascade of two semiconductor optical amplifiers, while maintaining an rf power change of less than 1.6 dB. The technique is scalable to more amplifiers and should allow realization of an rf phase shift of 360 deg.
机译:我们建议并通过实验证明了一种增加半导体波导的可调射频相移的方法,同时可以控制射频功率。该方法基于在一系列半导体光放大器中使用慢光和快光效果,并结合使用光谱滤波来增强折射率动态的作用。在两个半导体光放大器的级联中展示了在19 GHz微波频率下约240度的连续可调相移,同时保持rf功率变化小于1.6 dB。该技术可扩展至更多放大器,并应允许实现360度的射频相移。

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