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Diffraction limit investigation with sub-wavelength pixels

机译:亚波长像素的衍射极限研究

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摘要

Current state-of-the-art pixel dimensions for both visible and long-wave infrared (LWIR) imagers are approaching the wavelength of measurement. It is expected that technological advances will continue and that sub-wavelength pixels for these wavebands will become a reality. In light of the diffraction limit, scientists and engineers in the visible and infrared domains have now begun pose the question as to whether it is worth having a focal plane array (FPA) with pixel dimensions smaller than the imaging wavelength. Meanwhile, in the terahertz domain, FPAs have already been fabricated and cameras designed around them with sub-wavelength pixels. INO has developed THz cameras with 160×120 pixels with pixel pitch of 52 μm and with 388 x 284 pixels with pixel pitch of 35 μm. The THz wavelength range is from 40 μm to 1000 μm and thus the focal plane array has pixel dimensions below that of the imaging wavelength. This paper discusses experimental results of diffraction limit investigation using sub-wavelength pixel THz cameras.
机译:可见光和长波红外(LWIR)成像器的最新像素尺寸都接近测量波长。期望技术进步将继续,并且这些波段的亚波长像素将成为现实。鉴于衍射极限,可见光和红外领域的科学家和工程师现在已经开始提出这样一个问题,即像素尺寸小于成像波长的焦平面阵列(FPA)是否值得。同时,在太赫兹域中,已经制造了FPA,并在其周围设计了具有亚波长像素的相机。 INO已开发出THz摄像机,其像素间距为52μm的像素为160×120,像素间距为35μm的像素为388 x 284。 THz波长范围是40μm至1000μm,因此焦平面阵列的像素尺寸小于成像波长的像素尺寸。本文讨论了使用亚波长像素太赫兹相机进行衍射极限研究的实验结果。

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