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Detection and upconversion of three-dimensional MMW/THz images to the visible 被引量:3
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作者 Avihai Aharon(Akram) Daniel Rozban +3 位作者 Avi Klein Amir Abramovich Yitzhak Yitzhaky Natan S.Kopeika 《Photonics Research》 SCIE EI 2016年第6期306-312,共7页
We present an inexpensive technique to obtain a three-dimensional(3D) millimeter wave(MMW) and terahertz(THz) image using upconversion. In this work we describe and demonstrate a method for upconversion of MMW/THz rad... We present an inexpensive technique to obtain a three-dimensional(3D) millimeter wave(MMW) and terahertz(THz) image using upconversion. In this work we describe and demonstrate a method for upconversion of MMW/THz radiation to the visual band using a very inexpensive miniature glow discharge detector(GDD) and a silicon photodetector. We present MMW/THz upconversion images based on measuring the visual light emitting from the GDD rather than its electrical current. The results show better response time and better sensitivity compared to the electronic detection performed previously. Furthermore, in this work we perform frequency modulation continuous wave(FMCW) radar detection based on this method using a GDD lamp, with a photodetector to measure GDD light emission. By using FMCW detection, the range in addition to the intensity at each pixel can be obtained,thus yielding the 3D image. The GDD acts as a heterodyne mixer not only electronically but also optically. The suggested 3D upconversion technique using the GDD is simple and inexpensive and has better performance compared to other MMW/THz imaging systems suggested in the literature. This method provides minimum detectable signal power that is about 6 orders of magnitude better than similar plasma systems due to the very large internal signal gain deriving from the much smaller electrode separation and resulting in much higher plasma electric field. 展开更多
关键词 thz Detection and upconversion of three-dimensional mmw/thz images to the visible FMCW
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铜基微同轴技术及其在毫米波太赫兹领域的应用
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作者 史光华 郭诚 +3 位作者 王真 温潇竹 徐达 张安学 《空间电子技术》 2024年第5期30-39,共10页
近年来国内铜基微同轴技术在毫米波和太赫兹器件应用领域取得了显著进展。首先,论文综述了铜基微同轴的标准加工工艺,并介绍了基于该工艺成功设计的覆盖DC-1THz频段的多种传输线结构,包括矩形同轴、矩形波导、脊波导等常见射频传输线。... 近年来国内铜基微同轴技术在毫米波和太赫兹器件应用领域取得了显著进展。首先,论文综述了铜基微同轴的标准加工工艺,并介绍了基于该工艺成功设计的覆盖DC-1THz频段的多种传输线结构,包括矩形同轴、矩形波导、脊波导等常见射频传输线。其次,基于微同轴技术的大量有源和无源器件的设计,如滤波器、天线、宽带定向耦合器、射频GSG探针、放大器和倍频器等,这些器件的频率范围覆盖10 MHz至330 GHz,均基于微同轴工艺的特点进行了特殊设计,充分利用了该工艺的固有优势。最后,这些成果展示了国内铜基微同轴技术在射频器件模组领域的蓬勃发展,凸显出我国在铜基微同轴射频器件设计和加工技术方面的日益成熟。这些实践应用进一步证明了铜基微同轴技术在微波特性和小型化方面的卓越优势。因此,采用铜基微同轴技术的射频器件在毫米波和太赫兹领域展现出巨大的应用潜力和广阔的发展前景。 展开更多
关键词 铜基微同轴 射频MEMS 毫米波 太赫兹
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