利用等离子体金结构的超宽带和宽视场增强偏振红外探测

Ehab Awad
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引用次数: 0

摘要

中波和长波红外波段对成像和探测设备至关重要,因为它们赋予了不同物体、材料和表面的独特特征。通过等离子体增强光吸收是提高这类探测装置响应性的关键问题。此外,将偏振检测添加到这样的设备中可以区分不同的偏振,从而使用不同对象的独特签名突出和区分场景中的不同特征。在这项工作中,证明了等离子体增强检测与偏振鉴别。它覆盖了中波和长波红外光谱波段的超宽带波长范围(3-14µm)。它是围绕放置在红外探测器顶部的周期性交错渐变宽度金条纹和气隙的焦平面阵列构建的。以微辐射热计作为红外探测装置的一个例子来评价金结构的性能。交错渐变宽度结构允许覆盖超宽带红外范围。而等离子体允许偏振消光比辨别高达35dB,除了增强吸收高达200%。此外,该结构允许相当于120°的宽视场角度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-Broadband and Wide Field-Of-View Enhanced Polarimetric Infrared Detection Using a Plasmonic Gold Structure
Mid-wave and long-wave infrared bands become crucial for imaging and detection devices because they give unique characteristics of different objects, materials, and surfaces. Enhancing optical absorption through plasmonics is the key issue to increase the responsivity of such detection devices. Also, adding polarimetric detection to such devices can discriminate different polarizations and thus highlights and distinguishes between different features in a scene using unique signatures of different objects. In this work, a plasmonic-enhanced detection together with polarimetric discrimination is demonstrated. It covers an ultra-broadband wavelength range (3-14µm) of both mid-wave and long-wave infrared spectral bands. It is built around a focal-plane array of periodic and interleaved graded width gold-stripes and air-gaps that are placed on top of an infrared detector. A micro-bolometer is chosen as one example of infrared detection devices to evaluate the gold structure performance. The interleaved graded width structure allows covering the ultra-broadband infrared range. While the plasmonics allows having a polarization extinction-ratio discrimination up to 35dB, in addition to enhanced absorption up to 200%. Moreover, the structure allows for a wide field-of-view angle equals to 120°.
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