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首页> 外文期刊>The Journal of Chemical Physics >A CMOS millimeter-wave transceiver embedded in a semi-confocal Fabry-Perot cavity for molecular spectroscopy
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A CMOS millimeter-wave transceiver embedded in a semi-confocal Fabry-Perot cavity for molecular spectroscopy

机译:CMOS毫米波收发器,嵌入半凸面Fabry-Perot腔中,用于分子光谱

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The extension of radio frequency complementary metal oxide semiconductor (CMOS) circuitry into millimeter wavelengths promises the extension of spectroscopic techniques in compact, power efficient systems. We are now beginning to use CMOS millimeter devices for low-mass, low-power instrumentation capable of remote or in situ detection of gas composition during space missions. We have chosen to develop a Flygare-Balle type spectrometer, with a semi-confocal Fabry-Perot cavity to amplify the pump power of a mm-wavelength CMOS transmitter that is directly coupled to the planar mirror of the cavity. We have built a pulsed transceiver system at 92-105 GHz inside a 3 cm base length cavity and demonstrated quality factor up to 4680, allowing for modes with 20 MHz bandwidth, with a sufficient cavity amplification factor for mW class transmitters. This work describes the initial gas measurements and outlines the challenges and next steps. Published by AIP Publishing.
机译:将射频互补金属氧化物半导体(CMOS)电路扩展为毫米波长,有望在紧凑的高能效系统中扩展光谱技术。我们现在开始将CMOS毫米波器件用于低质量,低功率的仪器,这些仪器能够在太空飞行任务中远程或就地检测气体成分。我们选择开发一种Flygare-Balle型光谱仪,它具有半共焦的Fabry-Perot腔,以放大直接耦合到腔平面镜的mm波长CMOS发射器的泵浦功率。我们在3 cm基本长度的腔内建立了一个92-105 GHz的脉冲收发器系统,并演示了高达4680的品质因数,允许使用20 MHz带宽的模式,并具有足够的腔放大因数用于mW类发射机。这项工作描述了初始气体测量,并概述了挑战和下一步。由AIP Publishing发布。

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