Abstract
Currently, the best performing micropolarizer array is the
pattern introduced by LeMaster and
Hirakawa. In this Letter, we extend the available set of patterns with
the aim of improving reconstruction quality by leveraging the Fourier
domain and designing information carriers that yield optimal
bandwidth. First, the family of patterns widens the optimization
space of the pattern by facilitating variable
allocation of bandwidth for channels surrounding polarization and
intensity carriers. Second, the patterns present an intriguing option
for use within a hybrid spatiotemporal modulation scheme, in which the
multiple temporal measurements enable maximum theoretical spatial
resolution of reconstructed Stokes parameters.
© 2017 Optical Society of
America
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