Optics and Precision Engineering, Volume. 30, Issue 13, 1523(2022)
Interferometric coherence imaging aberration due to non-rotationally symmetric secondary wavefront degradation
Fig. 1. Effect of interferometric coherence imaging aberration on detection results
Fig. 4. Comparison of imaging aberrations caused by wavefront degradation
Fig. 5. Schematic diagram of interferometric coherent imaging aberration model
Fig. 6. Distribution of phase and amplitude of convolution kernel for Dirac sampling
Fig. 7. Distribution of phase and amplitude of convolution kernel for Gaussian sampling
Fig. 8. Results of Gaussian sampling after convolutional kernel interception compared with convolutional kernel without interception
Fig. 9. Phase distribution of integrated Gaussian sampling versus Gaussian convolution kernel results
Fig. 12. Experimental results in directions of meridian and sagittal
Fig. 13. Comparison of measured data with proposed model and its residual distribution
Fig. 14. Comparison of experimental results between different methods
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Sida LÜ, Mingzhuo LI, Haixiang HU, Donglin XU, Xuejun ZHANG. Interferometric coherence imaging aberration due to non-rotationally symmetric secondary wavefront degradation[J]. Optics and Precision Engineering, 2022, 30(13): 1523
Category: Modern Applied Optics
Received: Dec. 21, 2021
Accepted: --
Published Online: Jul. 27, 2022
The Author Email: HU Haixiang (hhx@ciomp.ac.cn), XU Donglin (xuedl@ciomp.ac.cn)