Spinning Pupil Aberration Measurement for anisoplanatic deconvolution
Optics
2021-06-04 v2 Computational Physics
Data Analysis, Statistics and Probability
Abstract
The aberrations in an optical microscope are commonly measured and corrected at one location in the field of view, within the so-called isoplanatic patch. Full-field correction is desirable for high-resolution imaging of large specimens. Here we present a novel wavefront detector, based on pupil sampling with sub-apertures, which measures the aberrated wavefront phase at each position of the specimen. Based on this measurement, we propose a region-wise deconvolution that provides an anisoplanatic reconstruction of the sample image. Our results indicate that the measurement and correction of the aberrations can be performed in a wide-field fluorescence microscope over its entire field of view.
Cite
@article{arxiv.2104.04366,
title = {Spinning Pupil Aberration Measurement for anisoplanatic deconvolution},
author = {Daniele Ancora and Tommaso Furieri and Stefano Bonora and Andrea Bassi},
journal= {arXiv preprint arXiv:2104.04366},
year = {2021}
}
Comments
5 pages, 4 figures