Detection device and method for measuring optical aspherical reflecting mirror surface shape by infrared interferometer

A detection device and aspheric surface technology, applied in the field of optical detection, can solve problems such as difficulty in measuring the surface shape of aspheric mirrors

CN110220477AActive Publication Date: 2019-09-10KUNMING NORTH INFRARED TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
Publication Date
2019-09-10

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Abstract

The invention relates to a detection device and method for measuring an optical aspherical reflecting mirror surface shape by an infrared interferometer, and relates to the technical field of opticaldetection, in particular to a detection device and method for measuring an optical aspherical reflecting mirror surface shape by using the infrared interferometer. The detection device comprises the infrared laser interferometer, a spatial filter, a first collimating mirror, a reference reflecting mirror, a beam splitter, a standard lens, a standard lens clamping device, a clamping device of a lens to be tested, a second collimating mirror, an infrared detector, a phase shifter, a guide rail and a computer. A laser interferometry detection method is provided for production and scientific research departments on wave surface parameters such as aspherical PV and RMS, and an effective and reliable basis is provided for aspherical wave surface parameter evaluation.
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Description

technical field

[0001] The invention relates to the technical field of optical detection, in particular to a detection device and method for measuring the surface shape of an optical aspheric reflective mirror using an infrared interferometer for detection, and an infrared interferometer for on-line detection suitable for mass production. Background technique

[0002] The use of aspheric optical components in the optical system can not only reduce the number and weight of optical components, reduce the size of the system, simplify the structure of the instrument, but also help correct aberrations, improve imaging quality, increase the freedom of optical design, and reduce costs.

[0003] In recent years, due to the special processing characteristics of infrared materials such as germanium Ge and the development of single-point diamond turning technology, the processing technology and application of infrared optical aspheric elements have been developed rapidly. At the same ti...

Examples

Embodiment 1

[0085] Embodiment 1: A detection device and method for measuring the surface shape of an optical aspheric mirror by an infrared interferometer, characterized in that the detection device includes an infrared laser interferometer, a spatial filter, a first collimating mirror, a reference mirror, and a beam splitter , standard lens, standard lens holder, lens holder to be tested, second collimating mirror, infrared detector, phase shifter, guide rail and computer, infrared laser interferometer, spatial filter, first collimating mirror, The beam splitter, standard lens holder and guide rail are arranged from left to right. The standard lens is placed on the standard lens holder, the lens holder to be tested is placed on the guide rail and slides along the guide rail, and the aspheric mirror to be tested is placed on the On the lens holder to be tested, the infrared laser interferometer, the spatial filter, the first collimator, the standard lens and the aspheric mirror to be teste...