Subsampled phase retrieval for temporal resolution enhancement in lensless on-chip holographic video
Abstract
On-chip holographic video is a convenient way to monitor biological samples simultaneously at high spatial resolution and over a wide field-of-view. However, due to the limited readout rate of digital detector arrays, one often faces a tradeoff between the per-frame pixel count and frame rate of the captured video. In this report, we propose a subsampled phase retrieval (SPR) algorithm to overcome the spatial-temporal trade-off in holographic video. Compared to traditional phase retrieval approaches, our SPR algorithm uses over an order of magnitude less pixel measurements while maintaining suitable reconstruction quality. We use an on-chip holographic video setup with pixel sub-sampling to experimentally demonstrate a factor of 5.5 increase in sensor frame rate while monitoring the in vivo movement of Peranema microorganisms.
Additional Information
© 2017 Optical Society of America. Received 14 Dec 2016; revised 22 Feb 2017; accepted 23 Feb 2017; published 28 Feb 2017. Z.W., K.H. and O.C. acknowledge the following funding: NSF CAREER award IIS-1453192, ONR award 1(GG010550)//N00014-14-1-0741, ONR award N00014-15-1-2735, and DARPA award (G001534-7510)//HR0011-16-C-0028. G.Z. acknowledges funding in part by NSF 1555986, NIH R21EB022378, and NIH R03EB022144. R.H. acknowledges financial support from the Einstein Foundation Berlin. We are thankful for the discussions and generous help from Dr. Xiaoze Ou, Dr. Mooseok Jang and Jaebum Chung. We also thank Prof. Changhuei Yang at Caltech and Prof. Do Young Noh at GIST for their insights and the kind use of his equipment for experimental development. D.R. acknowledges Caltech Electrical Engineering department Fellowship.Attached Files
Published - boe-8-3-1981.pdf
Submitted - 1612.02122.pdf
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Additional details
- Alternative title
- Subsampled Phase Retrieval for On-chip Lensless Holographic Video
- PMCID
- PMC5480592
- Eprint ID
- 75053
- Resolver ID
- CaltechAUTHORS:20170313-095555966
- NSF
- IIS-1453192
- Office of Naval Research (ONR)
- N00014-14-1-0741
- Office of Naval Research (ONR)
- N00014-15-1-2735
- Defense Advanced Research Projects Agency (DARPA)
- HR0011-16-C-0028
- NSF
- DBI-1555986
- NIH
- R21EB022378
- NIH
- R03EB022144
- Einstein Foundation Berlin
- Created
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2017-03-13Created from EPrint's datestamp field
- Updated
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2022-04-04Created from EPrint's last_modified field