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MIRROR-LENSED OBJECTIVE FOR WORK IN NEAR IR-SPECTRAL RANGE

机译:近红外光谱范围内镜面镜的工作目标

摘要

FIELD: physics.;SUBSTANCE: lens contains the first mirror installed in the course of the beam in the form of an off-axis fragment of a concave positive aspherical mirror, the second mirror in the form of a convex negative axisymmetric spherical mirror. Lens compensator with an optical force of 0.6…0.7 of the optical power of the entire lens, consists of the first positive meniscus, the second concave-convex negative lens, the third concave-concave negative lens, the fourth biconvex lens, the fifth concave-convex negative lens disposed on one optical axis displaced with respect to the optical axis lens, on which there are centers of curvature of the first and the second mirrors, and also has a real aperture diaphragm, located on the second mirror. Improving the image quality is carried out within the annular corner field Δω=2° (ωy0ymax=6°-8°) in the spectral range (1.50÷1.70) mcm with increased processability.;EFFECT: two-mirror mirror-lens objective with a lens compensator without central screening with enhanced image quality is created.;2 dwg, 1 tbl
机译:技术领域:物理学;实质:透镜包含以凹面正非球面镜的离轴碎片的形式安装在光束过程中的第一面反射镜,以凸面负轴对称球面镜的形式安装第二镜面。透镜补偿器,其光学力为整个透镜的光焦度的0.6…0.7,由第一正弯月面,第二负凹负透镜,第三负凹负透镜,第四双凸透镜,第五凹透镜组成凸负透镜设置在相对于光轴透镜偏移的一个光轴上,在该光轴上具有第一和第二反射镜的曲率中心,并且还具有位于第二反射镜上的实际孔径光阑。在光谱范围(1.50÷)的环形角场Δω= 2°(ω y0 ymax = 6°-8°)内进行图像质量的改善。 1.70)mcm,具有增强的可加工性。;效果:创建了具有中央补偿功能且没有中央屏幕的镜头补偿镜的两镜镜物镜; 2 dwg,1 tbl

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