Mathematical uniqueness of multimode ptychographic imaging

Author:

Wu Liqing12,Xu Yingming12,Tao Hua1ORCID,Chang Chengcheng1,He Xiaoliang,Liu Cheng1,Zhu Jianqiang1

Affiliation:

1. China Academy of Engineering Physics, Chinese Academy of Sciences

2. University of Chinese Academy of Sciences

Abstract

By writing diffracted intensities as a set of linear equations with the self-correlation of sample’s Fourier components as unknown terms and the self-correlation of illumination’s Fourier components as coefficients, it was found that the number of unknown terms to be determined is much larger in partially coherent PIE than that in purely coherent PIE. When a partially coherent illumination composed of N modes was applied a unique reconstruction can be determined by scanning the sample to at least 4N positions and recording 4N frames of diffraction patterns. While mathematically illustrating the physical mechanism of multimode ptychography and numerically demonstrating its capability in generating unique reconstruction under partially coherent illumination, this study showed for the first time that multimode ptychography could be an analytic imaging method.

Funder

National Natural Science Foundation of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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