Long focal-length measurement using divergent beam and two gratings of different periods
Jia Luo, Jian Bai, Jinchun Zhang, Changlun Hou, Kaiwei Wang, Xiyun Hou
Abstract
Jia Luo, Jian Bai, Jinchun Zhang, Changlun Hou, Kaiwei Wang, Xiyun Hou
Abstract
A new accurate method for long focal-length measurement based on Talbot interferometry is proposed. A divergent beam and two Ronchi gratings of different periods are employed, as the alternative of the collimated beam and two identical gratings, to achieve higher measurement accuracy. Moreover, with divergent beam, lenses of large aperture can be easily measured without scanning, which is required when it comes to traditional collimated beam. Numerical analysis and experiments were carried out. The results demonstrate the proposed method features remarkably high accuracy and repeatability.
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A new accurate method for long focal-length measurement based on Talbot interferometry is proposed. A divergent beam and two Ronchi gratings of different periods are employed, as the alternative of the collimated beam and two identical gratings, to achieve higher measurement accuracy. Moreover, with divergent beam, lenses of large aperture can be easily measured without scanning, which is required when it comes to traditional collimated beam. Numerical analysis and experiments were carried out. The results demonstrate the proposed method features remarkably high accuracy and repeatability.
Key concepts: Optics, Collimated light, Beam expander, Beam (structure), Repeatability, Interferometry, Focal length, Aperture (computer memory)