English

An algorithm for Bragg coherent X-ray diffractive imaging of highly strained nanocrystals

Materials Science 2020-02-19 v1 Mesoscale and Nanoscale Physics

Abstract

By using phase retrieval, Bragg Coherent Diffractive Imaging (BCDI) allows tracking of three-dimensional displacement fields inside individual nanocrystals. Nevertheless, in the presence of significant (1% and higher) strains, such as in the process of a structural phase transformation, fails due to the Bragg peak distortions. Here we present an advanced BCDI algorithm enabling imaging three-dimensional strain fields in highly strained crystals. We test the algorithm on particles simulated to undergo a structural phase transformation. While the conventional algorithm fails in unambiguously reconstructing the phase morphology, our algorithm correctly retrieves the morphology of coexistent phases with a strain difference of 1%. The key novelty is the simultaneous reconstruction of multiple scans of the same nanoparticle at snapshots through the phase transformations. The algorithm enables visualizing phase transformations in nanoparticles of lithium-ion, sodium-ion nanoparticles, and other nanoparticulate materials in working conditions (operando).

Keywords

Cite

@article{arxiv.1910.04227,
  title  = {An algorithm for Bragg coherent X-ray diffractive imaging of highly strained nanocrystals},
  author = {Ziyi Wang and Oleg Gorobtsov and Andrej Singer},
  journal= {arXiv preprint arXiv:1910.04227},
  year   = {2020}
}
R2 v1 2026-06-23T11:39:08.062Z