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Solar-blind ultraviolet optical system design for missile warning

机译:用于导弹预警的日盲紫外光学系统设计

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摘要

Solar-blind region of Ultraviolet (UV) spectrum has very important application in military field. The spectrum range is from 240nm to 280nm, which can be applied to detect the tail flame from approaching missile. A solar-blind UV optical system is designed to detect the UV radiation, which is an energy system. iKon-L 936 from ANDOR company is selected as the UV detector, which has pixel size 13.5 μm × 13.5 μm and active image area 27.6mm × 27.6 mm. CaF2 and F_silica are the chosen materials. The original structure is composed of 6 elements. To reduce the system structure and improve image quality, two aspheric surfaces and one diffractive optical element are adopted in this paper. After optimization and normalization, the designed system is composed of five elements with the maximum spot size 11.988μ m, which is less than the pixel size of the selected CCD detector. Application of aspheric surface and diffractive optical element makes each FOV have similar spot size, which shows the system almost meets the requirements of isoplanatic condition. If the focal length can be decreased, the FOV of the system can be enlarged further.
机译:紫外线的太阳盲区在军事领域具有非常重要的应用。光谱范围从240nm到280nm,可用于检测接近导弹的尾焰。太阳盲紫外光学系统旨在检测紫外线辐射,这是一个能量系统。选择了ANDOR公司的iKon-L 936作为紫外线检测器,它的像素尺寸为13.5μm×13.5μm,有效图像区域为27.6mm×27.6 mm。 CaF2和F_silica是选择的材料。原始结构由6个元素组成。为了减小系统结构并提高图像质量,本文采用了两个非球面和一个衍射光学元件。经过优化和归一化,设计的系统由五个点组成,最大点尺寸为11.988μm,小于所选CCD检测器的像素尺寸。非球面表面和衍射光学元件的应用使得每个FOV的光斑大小相似,这说明该系统几乎满足等平面条件的要求。如果可以减小焦距,则可以进一步放大系统的FOV。

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