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Low cost plasma Terahertz heterodyne image detection

机译:低成本等离子体太赫兹外差图像检测

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Miniature inexpensive neon indicator lamp plasma glow discharge detectors (GDD) are excellent candidates to serve as room temperature, low cost, terahertz (THz) radiation detectors and as pixels in THz imaging systems. Heterodyne amplification of low power signals via higher power reference beams is very important for THz imaging systems because it permits detection of much lower object beam intensities. An experimental result of 300GHz heterodyne detection by a single commercial GDD device costing about 30 cents is presented here. In heterodyne image detection a picture is taken of interference fringes or a hologram deriving from a coherent reference wave and a coherent wave reflected from or transmitted through an object. Transmission with in-line or zero angles between those two waves is important to widen the fringes. The GDD detector is transparent, so that it's possible to receive radiation from both sides, at 0 and 180 degree. This permit receiving the wave reflected from or transmitted through an object at 0 degree and the reference wave from the opposite direction at 180 degree. Such interference fringe widening can permit heterodyne direct imaging of the object instead of imaging the interference pattern.
机译:微型廉价霓虹灯指示灯等离子体辉光放电探测器(GDD)是优异的候选者,以作为室温,低成本,太赫兹(THz)辐射检测器和THz成像系统中的像素。通过更高功率参考光束的低功率信号的外差扩增对于THz成像系统非常重要,因为它允许检测到更低的物体光束强度。这里介绍了单一商业GDD装置的300GHz外差检测的实验结果。此处呈现约30美分。在外差图像检测中,拍摄图像的干涉条纹或从相干参考波的全息图以及通过物体反射或传输的相干波。在这两个波之间的在线或零角度传输对于扩大条纹是重要的。 GDD检测器是透明的,使得可以在0和180度下接收来自两侧的辐射。这允许在180度的相反方向上在0度和参考波处接收从物体反射或通过物体传输的波。这种干涉条纹宽松可以允许物体的外差直接成像而不是成像干涉图案。

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