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review article

Towards Quantum 3D Imaging Devices

Abbattista, Cristoforo
•
Amoruso, Leonardo
•
Burri, Samuel  
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July 12, 2021
Applied Sciences

We review the advancement of the research toward the design and implementation of quantum plenoptic cameras, radically novel 3D imaging devices that exploit both momentum–position entanglement and photon–number correlations to provide the typical refocusing and ultra-fast, scanning-free, 3D imaging capability of plenoptic devices, along with dramatically enhanced performances, unattainable in standard plenoptic cameras: diffraction-limited resolution, large depth of focus, and ultra-low noise. To further increase the volumetric resolution beyond the Rayleigh diffraction limit, and achieve the quantum limit, we are also developing dedicated protocols based on quantum Fisher information. However, for the quantum advantages of the proposed devices to be effective and appealing to end-users, two main challenges need to be tackled. First, due to the large number of frames required for correlation measurements to provide an acceptable signal-to-noise ratio, quantum plenoptic imaging (QPI) would require, if implemented with commercially available high-resolution cameras, acquisition times ranging from tens of seconds to a few minutes. Second, the elaboration of this large amount of data, in order to retrieve 3D images or refocusing 2D images, requires high-performance and time-consuming computation. To address these challenges, we are developing high-resolution single-photon avalanche photodiode (SPAD) arrays and high-performance low-level programming of ultra-fast electronics, combined with compressive sensing and quantum tomography algorithms, with the aim to reduce both the acquisition and the elaboration time by two orders of magnitude. Routes toward exploitation of the QPI devices will also be discussed.

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Type
review article
DOI
10.3390/app11146414
Author(s)
Abbattista, Cristoforo
Amoruso, Leonardo
Burri, Samuel  
Charbon, Edoardo  
Di Lena, Francesco
Garuccio, Augusto
Giannella, Davide
Hradil, Zdeněk
Iacobellis, Michele
Massaro, Gianlorenzo
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Date Issued

2021-07-12

Published in
Applied Sciences
Volume

11

Issue

14

Article Number

6414

Subjects

quantum imaging

•

plenoptic imaging

•

quantum correlations

•

SPAD arrays

•

quantum fisher information

•

compressive sensing

Note

This is an Open Access article under the terms of the Creative Commons Attribution License

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
August 10, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/180500
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