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Comparison of passive athermalization results of LWIR optical designs utilizing different infrared optical materials

机译:利用不同红外光学材料的LWIR光学设计的无源液晶结果比较

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In this paper, different optical designs, which are composed of different LWIR optical materials, are utilized for passive athermalization and their performance in athermalization are analyzed. The optical designs are carried out by preserving the athermal property as well as keeping the image quality at higher levels within the working temperature between -40°C and +60°C. Our designs consist of two different infrared optical elements to maintain the focus positions as stable as possible within the working temperature. The passive athermalization process begins with the calculation of athermalization conditions of candidate material properties. By taking into account these conditions, athermal material pairs are chosen. The optical design begins with an optimization process using paraxial optics. In order to reduce aberrations such as coma, astigmatism, spherical and chromatic, aspherical surfaces are utilized during the optimization process. At the end of the design phase, the performance of different configurations of athermal optical material pairs, which are enclosed by aluminum alloy housing material, are presented.
机译:本文利用不同的LWIR光学材料构成的不同光学设计用于被动热化,分析其在滴热剂中的性能。通过保留动脉特性来进行光学设计,以及将图像质量保持在-40°C和+ 60℃之间的工作温度的更高水平。我们的设计包括两个不同的红外光学元件,以将焦点位置保持在工作温度内尽可能稳定。被动热化过程开始于计算候选材料特性的热化条件。通过考虑这些条件,选择滴注材料对。光学设计开始使用近轴光学器件进行优化过程。为了减少在优化过程期间使用诸如昏迷,散光,球形和色彩,非球面的非球面的非球面。在设计阶段结束时,提出了由铝合金壳体材料包围的不同构造的动脉光学材料对的性能。

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