Chinese Journal of Lasers, Volume. 49, Issue 24, 2404001(2022)
Scanning Measurement of Large Aperture Collimated Wavefront with Pentaprism Array Based on Nonuniform Sampling
Fig. 2. Principle of nonuniform sampling pentaprism array. (a) Three-dimensional diagram of principle of nonuniform sampling pentaprism array; (b) principle of slope measurement in X direction; (c) principle of slope measurement in Y direction
Fig. 3. Reconstruction of wavefront with pentaprism array. (a) Simulated collimated wavefront; (b) random error in simulated collimated wavefront; (c) reconstructed collimated wavefront; (d) errors of reconstructed collimated wavefront; (e) simulated and reconstructed Zernike polynomial coefficients
Fig. 4. Robustness of reconstructing collimated wavefront. (a) PV values of errors; (b) RMS values of errors
Fig. 6. Spot centroid displacement measured with pentaprism array scanning. (a) Spot centroid displacement in X direction; (b) spot centroid displacement in Y direction
Fig. 9. Comparison between pentaprism array scanning measurement results and interferometric measurement results. (a) Pentaprism array scanning measurement results; (b) optical path of interferometric test; (c) interferometric measurement results; (d) Zernike polynomial coefficients of measurement results
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Weijian Liu, Zhishan Gao, Yicen Ma, Xiaoyu Che, Lihua Lei, Yunxia Fu, Qun Yuan. Scanning Measurement of Large Aperture Collimated Wavefront with Pentaprism Array Based on Nonuniform Sampling[J]. Chinese Journal of Lasers, 2022, 49(24): 2404001
Category: Measurement and metrology
Received: Aug. 17, 2022
Accepted: Oct. 10, 2022
Published Online: Dec. 19, 2022
The Author Email: Yuan Qun (yuanqun@njust.edu.cn)