首页> 外文期刊>IEICE Transactions on Electronics >Design, Fabrication and Characterisation of Normal-Incidence 1.56-μm Multiple-Quantum-Well Asymmetric Fabry-Perot Modulators for Passive Picocells
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Design, Fabrication and Characterisation of Normal-Incidence 1.56-μm Multiple-Quantum-Well Asymmetric Fabry-Perot Modulators for Passive Picocells

机译:用于被动微微电池的正入射1.56-μm多量子阱不对称法布里-珀罗调制器的设计,制作和表征

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We have designed and fabricated air-bridged modulators with bandwidths exceeding 10 GHz, the highest yet realised to date for InGaAsP/InGaAsP multiple-quantum-well (MQW) asymmetric Fabry-Perot modulators (AFPMs). Microwave modulation, measurements of intermodulation between the photodetected downlink and modulated uplink signals, and bi-directional broadband data over fibre transmission experiments have been performed to verify the potential of the AFPM as a single electrical/optical transceiver. We also report the first direct integration of this AFPM with a microstrip patch antenna and present results of a preliminary microwave signal transmission experiment over a distance of 1.4 m in free-space at 5.2 GHz with the integrated AFPM as a photodetector.
机译:我们设计并制造了带宽超过10 GHz的空桥调制器,这是迄今为止InGaAsP / InGaAsP多量子阱(MQW)非对称法布里-珀罗调制器(AFPM)迄今为止实现的最高频率。已经进行了微波调制,光检测到的下行链路和调制后的上行链路信号之间的互调测量以及通过光纤传输的双向宽带数据,以验证AFPM作为单个电/光收发器的潜力。我们还报告了该AFPM与微带贴片天线的首次直接集成,并展示了以集成AFPM作为光电探测器在5.2 GHz的自由空间中1.4 m的距离上进行的初步微波信号传输实验的结果。

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