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Large-aperture laser differential confocal ultra-long focal length measurement and its system

  • Beijing Institute of Technology
  • China Academy of Engineering Physics

科研成果: 期刊稿件文章同行评审

摘要

A new laser differential confocal ultra-long focal length measurement (LDCFM) method is proposed with the capability to self-calibrate the reference lens (RL) focal length and the axial space between the test lens and RL. Using the property that the focus of laser differential confocal ultra-long focal length measurement system (LDCFS) precisely corresponds to the null point of the differential confocal axial intensity curve, the proposed LDCFM measures the RL focal length fR' by precisely identifying the positions of the focus and last surface of RL, measures the axial space d0between RL and test ultra-long focal length lens (UFL) by identifying the last surface of RL and the vertex of UFL last surface, and measures the variation l in focus position of LDCFS with and without test UFL, and then calculates the UFL focal length fT' by the above measured fR', d0and l. In addition, a LDCFS based on the proposed method is developed for a large aperture lens. The experimental results indicate that the relative uncertainty is less than 0.01% for the test UFL, which has an aperture of 610 mm and focal length of 31,000 mm. LDCFM provides a novel approach for the high-precision focal-length measurement of large-aperture UFL.

源语言英语
页(从-至)17379-17393
页数15
期刊Optics Express
23
13
DOI
出版状态已出版 - 2015
已对外发布

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