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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Solid-State Terahertz Superresolution Imaging Device in 130-nm SiGe BiCMOS Technology
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Solid-State Terahertz Superresolution Imaging Device in 130-nm SiGe BiCMOS Technology

机译:采用130nm SiGe BiCMOS技术的固态太赫兹超分辨率成像设备

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Breaking through diffraction limit at terahertz frequencies is currently performed with the near-field scanning optical microscopy, which suffers from low integration and sensitivity limitations. In this paper, a solid-state superresolution imaging device in 130-nm SiGe BiCMOS technology operating around 534-562 GHz is presented. The device exhibits a singlechip integration of the complete imaging functionality, including a tunable CW illumination source, near-field sensing, and power detection with a high response of up to 9.65 μA and a noise√ equivalent power of around 15-21 pW/ Hz at 60 kHz. Here, the stopband characteristics of a novel cross-bridged double splitring resonator are exploited as an object-tunable transmission gate between a 3-push Colpitts oscillator and a simple HBT power detector. The resonator features a 3-D topography to achieve high-spatial confinement of the surface near-fields and is capable of resolving structural details with an estimated lateral resolution down to 10-12 μm. For a separate antenna-coupled oscillator breakout, a radiated power of up to 28.2 μW was measured. Furthermore, a 2-D raster-scanned superresolution image with a remarkable signal-to-noise ratio of 42 dB was captured for the device operating even at dc.
机译:目前使用近场扫描光学显微镜来突破太赫兹频率的衍射极限,这受到低积分和灵敏度限制的困扰。本文提出了一种在534-562 GHz频率下工作的130-nm SiGe BiCMOS技术的固态超分辨率成像设备。该器件具有完整成像功能的单芯片集成,包括可调谐的CW照明源,近场感测和功率检测,具有高达9.65μA的高响应和噪声√等效功率,约为15-21 pW / Hz在60 kHz在这里,新型跨桥双分裂谐振器的阻带特性被用作3推Colpitts振荡器和简单HBT功率检测器之间的目标可调传输门。该谐振器具有3-D形貌,可实现表面近场的高空间限制,并能够解析结构细节,估计横向分辨率低至10-12μm。对于单独的天线耦合振荡器突围,测得的辐射功率高达28.2μW。此外,对于即使在直流条件下工作的设备,也捕获了具有42 dB显着信噪比的二维光栅扫描超分辨率图像。

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