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Pixel super-resolution with spatially entangled photons
by
Faccio, Daniele
, Reichert, Matthew
, Zhao, Jiuxuan
, Ndagano, Bienvenu
, Harvey, Andrew R.
, Lyons, Ashley
, Charbon, Edoardo
, Cameron, Patrick
, Fleischer, Jason W.
, Defienne, Hugo
in
639/624/1107/510
/ 639/624/400/482
/ 639/766/930/2735
/ Holography
/ Humanities and Social Sciences
/ Image acquisition
/ Information retrieval
/ multidisciplinary
/ Optical components
/ Photons
/ Pixels
/ Probability distribution
/ Science
/ Science (multidisciplinary)
/ Spatial data
/ Spatial discrimination
/ Spatial resolution
2022
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Pixel super-resolution with spatially entangled photons
by
Faccio, Daniele
, Reichert, Matthew
, Zhao, Jiuxuan
, Ndagano, Bienvenu
, Harvey, Andrew R.
, Lyons, Ashley
, Charbon, Edoardo
, Cameron, Patrick
, Fleischer, Jason W.
, Defienne, Hugo
in
639/624/1107/510
/ 639/624/400/482
/ 639/766/930/2735
/ Holography
/ Humanities and Social Sciences
/ Image acquisition
/ Information retrieval
/ multidisciplinary
/ Optical components
/ Photons
/ Pixels
/ Probability distribution
/ Science
/ Science (multidisciplinary)
/ Spatial data
/ Spatial discrimination
/ Spatial resolution
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Pixel super-resolution with spatially entangled photons
by
Faccio, Daniele
, Reichert, Matthew
, Zhao, Jiuxuan
, Ndagano, Bienvenu
, Harvey, Andrew R.
, Lyons, Ashley
, Charbon, Edoardo
, Cameron, Patrick
, Fleischer, Jason W.
, Defienne, Hugo
in
639/624/1107/510
/ 639/624/400/482
/ 639/766/930/2735
/ Holography
/ Humanities and Social Sciences
/ Image acquisition
/ Information retrieval
/ multidisciplinary
/ Optical components
/ Photons
/ Pixels
/ Probability distribution
/ Science
/ Science (multidisciplinary)
/ Spatial data
/ Spatial discrimination
/ Spatial resolution
2022
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Journal Article
Pixel super-resolution with spatially entangled photons
2022
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Overview
Pixelation occurs in many imaging systems and limits the spatial resolution of the acquired images. This effect is notably present in quantum imaging experiments with correlated photons in which the number of pixels used to detect coincidences is often limited by the sensor technology or the acquisition speed. Here, we introduce a pixel super-resolution technique based on measuring the full spatially-resolved joint probability distribution (JPD) of spatially-entangled photons. Without shifting optical elements or using prior information, our technique increases the pixel resolution of the imaging system by a factor two and enables retrieval of spatial information lost due to undersampling. We demonstrate its use in various quantum imaging protocols using photon pairs, including quantum illumination, entanglement-enabled quantum holography, and in a full-field version of N00N-state quantum holography. The JPD pixel super-resolution technique can benefit any full-field imaging system limited by the sensor spatial resolution, including all already established and future photon-correlation-based quantum imaging schemes, bringing these techniques closer to real-world applications.
Pixelation is common in quantum imaging systems and limit the image spatial resolution. Here, the authors introduce a pixel super-resolution approach based on measuring the full spatially-resolved joint probability distribution of spatially-entangled photons, and improve pixel resolution by a factor two.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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