紧凑的高分辨率宽视场红外物镜工作在(8 - 12微米)的光谱带不同的观测应用

Mohamed H. Ellithey, Alaaeldin Mahmoud, H. El-Sheikh, A. Mokhtar
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引用次数: 2

摘要

红外成像系统各组成部分之间的关系;红外物镜是红外成像链的第一个重要组成部分,它可以影响红外成像系统的整体性能。本文提出了一种基于ZEMAX软件的8-12µm波段高分辨率大视场红外物镜的结构和详细设计方案。介绍和讨论了目标设计约束、程序、优化和相关的优点图。通过测量物镜的均方根RMS半径曲线和平均调制传递函数(AMTF)来评价该红外物镜的性能,结果表明该物镜在RMS半径曲线和AMTF方面具有较高的性能。RMS半径以探测器像素间距为17µm为中心,在29.4周/毫米的空间频率分辨率边界(奈奎斯特频率)下,AMTF值高达0.5。该物镜的紧凑设计和高性能使其成为不同观测应用的理想选择。该目标的紧凑结构也使其适合不同的民用用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compact High Resolution Wide Field of View IR objective operating in (8 - 12 µm) Spectral Band for Different Observation Applications
among the various components of Infrared imaging system; IR objective is the first essential component of the IR imaging chain that can affect the overall performance of the IR imaging systems. In this paper, a proposed structure and detailed design of a high resolution wide field of view IR objective operating in the spectral band 8-12 µm using ZEMAX software is presented. The objective design constrains, procedures, optimization and the related Figure of merits are introduced and discussed. The objective Root Mean Square RMS radius curve and average modulation transfer function (AMTF) were measured in order to evaluate the performance of the proposed IR objective, the results showed high performance in terms of RMS radius curve and AMTF. The RMS radius is centered on a detector pixel pitch of 17 µm with a high AMTF value of 0.5 at the spatial frequency resolution boundary (Nyquist frequency) of 29.4 cycle/millimeter. The compact design and the high performance of the proposed objective make it a good candidate for different observation applications. Compact construction of the proposed objective also makes it suitable for different civilian applications.
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