In‐Situ Wavefront Correction via Physics‐Informed Neural Network

Author:

Long Xian12ORCID,Gao Yuan12,Yuan Zheng12,Yan Wenxiang12,Ren Zhi‐Cheng12,Wang Xi‐Lin12,Ding Jianping12ORCID,Wang Hui‐Tian12ORCID

Affiliation:

1. National Laboratory of Solid Microstructures and School of Physics Nanjing University Nanjing 210093 China

2. Collaborative Innovation Center of Advanced Microstructures Nanjing 210093 China

Abstract

AbstractWavefront distortions pose a significant limitation in various optical applications, hindering further advancements in optical system performance. In this study, a novel generic calibration model based on Zernike‐fitting neural network (ZFNN) is proposed, which enables insitu wavefront correction with just a single‐shot measurement. The experimental setup follows a standard or equivalent focal‐field imaging optical path, allowing calibration without the need to remove any components from the optical system. The ZFNN, a physics‐informed neural network, offers the advantage of not requiring prior training, eliminating the need for extensive labeled data. With a fully connected network architecture and a modest number of neurons (469), the ZFNN achieves exceptionally fast optimization speed and meets the basic requirements for real‐time calibration. Consequently, this approach holds great potential for applications such as rapid calibration of optical systems, high‐precision light field modulation, and various advanced imaging techniques.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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