DOE OSTI · 1660755
Multigrid Optimization for Large-Scale Ptychographic Phase Retrieval
Abstract
Ptychography is a popular imaging technique that combines diffractive imaging with scanning microscopy. The technique consists of a coherent beam that is scanned across an object in a series of overlapping positions, leading to reliable and improved reconstructions. Ptychographic microscopes allow for large fields to be imaged at high resolution at the cost of additional computational expense. Herein, we propose a multigrid-based optimization framework to reduce the computational burdens of large-scale ptychographic phase retrieval. Our proposed method exploits the inherent hierarchical structures in ptychography through tailored restriction and prolongation operators for the object and data domains. Our numerical results show that our proposed scheme accelerates the convergence of its underlying solver and outperforms the ptychographical iterative engine, a workhorse in the optics community.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Fung, Samy Wu, Di, Zichao (Wendy). 2020-02-19. Multigrid Optimization for Large-Scale Ptychographic Phase Retrieval. https://doi.org/10.1137/18m1223915
Cite the original work for its findings. Save a collection to share your selection of sources.