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长波红外大孔径长焦距无热化光学系统设计

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对于长波红外长焦距光学系统,大孔径能使系统具有更好的成像亮度,但也带来了孔径边缘像差较大且难以校正的问题。利用折反射式结构减少光学系统总长,采用两块反射镜结构作为基础,在其后搭配一组校正折射透镜构成光学系统,并应用光焦度分配、消热差及消色差条件,设计出大孔径、长焦距的长波红外无热化光学系统。该光学系统工作波段为8~12 μm,焦距为800 mm,全视场角为 0。6°,F数为 2。5,遮拦比为 0。2,光学系统总长为 344。62 mm;在-40~60℃工作温度范围内,全视场角的调制传递函数值在奈奎斯特频率 20 lp/mm处均大于 0。25。设计的长波红外大孔径长焦距光学系统由2块反射镜和4块折射透镜组成,系统结构紧凑,成像性能稳定,可为类似此类光学系统设计提供参考。
Design of Long-wave Infrared Athermalized Optical System with Large Aperture and Long Focal Length
Long-wave infrared optical system with long focal length has been widely used for the fields of military,industrial,civil,medical and so on.People often pursue the large aperture imaging to obtain better imaging,which makes this kind of optical systems have the characteristics of long focal length,large aperture and wide working band range,and it results in serious aberrations and difficult to correct.In order to reduce the complexity of the structure of infrared optical system,the catadioptric structure design is often used to reduce the total length of the optical system;therefore,based on the structure of two reflection mirrors,the optical system was composed of a set of correcting refraction lens after.Firstly,applying the method of coaxial dual mirror optical structure determining parameters to solve the optical parameters of the primary and secondary lens,and an aberration correction spherical lens group consisting of four refraction lenses is added behind the optical structure,to form the initial structure of the long-wave infrared optical system design with long focal length;and then,applying the three conditions of focal degree distribution,heat aberration dissipation and achromatic dissipation to realize the athermalization design,the optical surfaces of the primary and secondary mirrors applied secondary aspherical to design,and combining with optical design software to build the aberration optimization function of the optical system to optimize the aberration.Finally,applying the design method,a long-wave infrared athermalized optical system with large aperture and long focal length is designed,and the operating band of the optical system is 8~12 μm,the focal length is 800 mm,the full field of view angle is 0.6°,the F number is 2.5,the obstruction ratio is 0.2,the total length of the optical system is 344.62 mm.In the operating temperature range of-40℃~60℃,the value of modulation transfer function in the full field of view angle is greater than 0.25 at the Nyquist frequency of 20 lp/mm.The designed long-wave infrared and athermalized optical system with large aperture and long focal length has the characteristics of compact structure and is good and stable in imaging performance,and realize the optical passive athermalization design of optical system in the case of operating temperature range of-40℃~60℃.The design method of long-wave infrared and athermalized optical system with large aperture and long focal length discussed provides a reference method for the design of such optical systems,which is of great significance and has great application value.

Optical system designLong-wave infraredLarge apertureLong focal lengthAthermalization

曹一青、沈志娟

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莆田学院 机电与信息工程学院,莆田 351100

福建省激光精密加工工程技术研究中心,莆田 351100

光学系统设计 长波红外 大孔径 长焦距 无热化

国家自然科学基金福建省科技厅引导性项目福建省教育厅中青年教师教育科研项目福建省技术创新重点攻关及产业化项目福建省自然科学基金

622051682022H0051JAT2202942023XQ0172020J01916

2024

光子学报
中国光学学会 中国科学院西安光学精密机械研究所

光子学报

CSTPCD北大核心
影响因子:0.948
ISSN:1004-4213
年,卷(期):2024.53(3)
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