Volume 56, Issue 5 pp. 1528-1536
research papers

Bragg coherent modulation imaging for highly strained nanocrystals: a numerical study

Jiangtao Zhao

Jiangtao Zhao

Southern University of Science and Technology, Department of Electrical and Electronic Engineering, 1088 Xueyuan Avenue, Shenzhen, 518055 People's Republic of China

Deutsches Elektronen-Synchrotron (DESY), Notkestraße 85, Hamburg, 22607 Germany

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Ivan A. Vartanyants

Ivan A. Vartanyants

Deutsches Elektronen-Synchrotron (DESY), Notkestraße 85, Hamburg, 22607 Germany

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Fucai Zhang

Corresponding Author

Fucai Zhang

Southern University of Science and Technology, Department of Electrical and Electronic Engineering, 1088 Xueyuan Avenue, Shenzhen, 518055 People's Republic of China

Fucai Zhang, e-mail: [email protected]Search for more papers by this author
First published: 27 September 2023

Abstract

Bragg coherent diffraction imaging (BCDI) is a unique and powerful method for tracking 3D strain fields non-destructively. While BCDI has been successfully applied to many scientific research fields and is in high demand, the reconstructed results for highly strained crystals are still subject to substantial uncertainties. Here, progress in improving the suitability of BCDI for general samples by exploiting wavefront modulation is reported. Extensive numerical simulations demonstrate that significant improvements over the current method for reconstructing highly strained model nanocrystals can be achieved. The proposed method strongly suppresses the appearance of ambiguous solutions, and exhibits fast convergence and high robustness in phase retrieval. Possible experimental difficulties in implementing this method are discussed in detail.

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