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MEMS-SOA Spectrum-Sliced Auto-Equalized Source Enabling Uniformly Tunable Microwave Photonic Filter

机译:MEMS-SOA频谱切片的自动均等化源,实现均匀可调微波光子过滤器

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摘要

In this work, we report a Micro-Electro-Mechanical System (MEMS)-Semiconductor Optical Amplifier (SOA) active interferometer as a low cost and miniaturized tunable broadband sliced source and optical loss auto-equalizer for single pass band microwave photonic filter (MPF). A low finesse Fabry-Perot MEMS interferometer is formed from a movable deeply etched micro-mirror in front of a cleaved fiber facet. The interferometer slices the amplified spontaneous emission (ASE) output of the SOA, while the output is feedback to the SOA again for amplification and optical loss auto-equalization through the SOA gain saturation effect. This configuration improved the uniformity of the MPF passband attenuation along the tuning range down to 3.72 dB only. The filter center frequency can be finely tuned electrically for +/- 241.6 MHz with a MEMS electrostatic comb actuator driving the mirror. The center frequency is controlled by the distance between fiber facet and micro-mirror. The operation of the proposed MEMS-SOA based MPF is experimentally verified as a proof of concept from 1.2 to 4.5 GHz and can be easily extended to higher frequencies. A tuning resolution of 6.04 MHz/mu m is achieved with stopband attenuation larger than 20 dB and 3-dB bandwidth mean value of 141 MHz.
机译:在这项工作中,我们将微电机械系统(MEMS) - 界面光放大器(SOA)有源干涉仪作为单通带微波光学滤光器的低成本和小型化的可调宽带切片源和光学损耗自动均衡器(MPF )。低矮的FINESE-FABRY-PEROL MEMS干涉仪由切割的光纤面前面的可移动深蚀刻的微镜形成。干涉仪切片SOA的放大的自发发射(ASE)输出,而输出再次反馈通过SOA增益饱和效应进行放大和光学损耗自动均衡。这种配置改善了MPF通带衰减的均匀性沿着调谐范围下降到3.72 dB。滤波器中心频率可以用驱动镜子的MEMS静电梳致动器电气精细调谐+/- 241.6 MHz。中心频率由光纤面和微镜之间的距离控制。所提出的MEMS-SOA基于MPF的操作是通过1.2到4.5 GHz的概念证明的实验验证,并且可以轻松扩展到更高的频率。通过大于20dB的停止带衰减和3dB带宽平均值为141MHz的调谐分辨率。

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