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Reconfigurable-Pitch Photonic MEMS Devices

机译:可重调距光子MEMS器件

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摘要

This paper will investigate a novel agile-pitch diffraction grating array design and phenomenology, for micro-shutter Photonic MEMS technologies, to enable adaptive coded aperture imaging and non-imaging systems. The use of Photonic MEMS for creating adaptive coded apertures, for surveillance systems, has been gaining momentum since 2007 . The use of the agile-pitch diffraction grating has also been used previously to perform beam-dispersion which is a critical step in imaging processing. Through the investigation of new diffraction grating approaches, we hope to show a reconfigurable capability for agile beam steering for adaptive coded apertures surveillance imaging and non-imaging systems. This paper discusses challenges and opportunities that may arise from in-house fabrication of agile-pitch diffraction grating array micro-shutter designs which may prevent and/or improve structural uniformity, reproducibility, & reliability. This paper will also discuss characterization of the micro-shutters to include mechanical, electrical and optical properties. The "open and shut" speeds of the micro-shutter device will also be assessed from a scaling perspective to determine usability.
机译:本文将研究用于微快门光子MEMS技术的新型变距衍射光栅阵列设计和现象学,以实现自适应编码孔径成像和非成像系统。自2007年以来,使用光子MEMS来创建用于监视系统的自适应编码孔径的势头一直很强劲。敏捷间距衍射光栅的使用先前也已经用于执行光束分散,这是成像处理中的关键步骤。通过研究新的衍射光栅方法,我们希望显示出可重构能力,用于自适应编码孔径监视成像和非成像系统的敏捷光束转向。本文讨论了内部制造的敏捷间距衍射光栅阵列微快门设计可能带来的挑战和机遇,这些挑战可能会阻止和/或提高结构的均匀性,可重复性和可靠性。本文还将讨论微快门的特性,包括机械,电气和光学特性。还将从缩放角度评估微快门设备的“打开和关闭”速度,以确定可用性。

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