Projection methods for high numerical aperture phase retrieval

Journal Article (2021)
Author(s)

Hieu Thao Nguyen (Can Tho University, TU Delft - Team Raf Van de Plas)

O.A. Soloviev (TU Delft - Team Shengling Shi, Flexible Optical B.V.)

D. Russell Luke (University of Göttingen)

M.H.G. Verhaegen (TU Delft - Team Shengling Shi)

Research Group
Team Raf Van de Plas
Copyright
© 2021 Hieu Thao Nguyen, O.A. Soloviev, Russell Luke, M.H.G. Verhaegen
DOI related publication
https://doi.org/10.1088/1361-6420/ac3322
More Info
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Publication Year
2021
Language
English
Copyright
© 2021 Hieu Thao Nguyen, O.A. Soloviev, Russell Luke, M.H.G. Verhaegen
Research Group
Team Raf Van de Plas
Issue number
12
Volume number
37
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Abstract

We develop for the first time a mathematical framework in which the class of projection algorithms can be applied to high numerical aperture (NA) phase retrieval. Within this framework, we first analyze the basic steps of solving the high-NA phase retrieval problem by projection algorithms and establish the closed forms of all the relevant projection operators. We then study the geometry of the high-NA phase retrieval problem and the obtained results are subsequently used to establish convergence criteria of projection algorithms in the presence of noise. Making use of the vectorial point-spread-function (PSF) is, on the one hand, the key difference between this paper and the literature of phase retrieval mathematics which deals with the scalar PSF. The results of this paper, on the other hand, can be viewed as extensions of those concerning projection methods for low-NA phase retrieval. Importantly, the improved performance of projection methods over the other classes of phase retrieval algorithms in the low-NA setting now also becomes applicable to the high-NA case. This is demonstrated by the accompanying numerical results which show that available solution approaches for high-NA phase retrieval are outperformed by projection methods.