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Multi-Spectral Terahertz Interferometric Imaging Based on a Monolithic Retroactive Silicon Chip

机译:基于单片逆变硅芯片的多光谱Terahertz干涉成像

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This paper presents a multi-spectral interferometric method to coherently emit and detect multiple terahertz tones on the same antenna equipped silicon chip without the need of external elements. The method consists of exploiting the reciprocal properties of optical, electromagnetic and electrical components of a silicon integrated terahertz harmonic oscillator allowing it to operate as a source and detector in the same time. We name this method retroactive detection or imaging in contrast with traditional active terahertz imaging systems where a distinct source and detector are needed, this retroactive approach eliminate the need of additional terahertz components. By detecting the reflected terahertz waves on a remote target, images of a coin surface are produced at 0.35 THz, 0.7 THz, 1.05 THz and 1.4 THz. The device operates at room temperature in a continuous-wave mode.
机译:本文呈现了一种多光谱干涉测量方法,用于相干地发射和检测配备的硅芯片的同一天线上的多个太赫兹音调,而不需要外部元件。该方法包括利用硅集成的太赫兹谐振器的光学,电磁和电气部件的互易性特性,使其在同一时间作为源和检测器操作。我们将该方法命名为逆向检测或成像,与需要不同的源和检测器的传统活性太赫兹成像系统,这种追溯方法消除了额外的太赫兹组件的需求。通过在远程目标上检测反射的太赫兹波,硬币表面的图像在0.35至THz,0.7至16至16六个,1.05六茨和1.4至THz。该器件在室温下以连续波模式运行。

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