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8C20001

Quantum 3D imaging at high speed and high resolution

Project goals

In this project, we design and implement radically novel 3D imaging devices, quantum plenoptic cameras, which exploit both momentum-position entanglement and photon-number correlations to enable the typical refocusing and ultra-fast, scanning-free, 3D imaging capability of plenoptic devices, but with dramatically enhanced performances: i) diffraction limited resolution, unattainable in standard plenoptic cameras; ii) an unprecedented large depth of focus, even 10 times larger than in standard imaging at the given resolution; iii) ultra-low noise, aiming at sub-shot noise performances.

Keywords

quantum tomographyquantum 3D imagingsuper-resolution imaging

Public support

  • Provider

    Ministry of Education, Youth and Sports

  • Programme

  • Call for proposals

  • Main participants

    Univerzita Palackého v Olomouci / Přírodovědecká fakulta

  • Contest type

    M2 - International cooperation

  • Contract ID

    MSMT-10927/2020-4/1

Alternative language

  • Project name in Czech

    Quantum 3D imaging at high speed and high resolution

  • Annotation in Czech

    In this project, we design and implement radically novel 3D imaging devices, quantum plenoptic cameras, which exploit both momentum-position entanglement and photon-number correlations to enable the typical refocusing and ultra-fast, scanning-free, 3D imaging capability of plenoptic devices, but with dramatically enhanced performances: i) diffraction limited resolution, unattainable in standard plenoptic cameras; ii) an unprecedented large depth of focus, even 10 times larger than in standard imaging at the given resolution; iii) ultra-low noise, aiming at sub-shot noise performances.

Scientific branches

  • R&D category

    ZV - Basic research

  • OECD FORD - main branch

    10306 - Optics (including laser optics and quantum optics)

  • OECD FORD - secondary branch

    10301 - Atomic, molecular and chemical physics (physics of atoms and molecules including collision, interaction with radiation, magnetic resonances, Mössbauer effect)

  • OECD FORD - another secondary branch

    10201 - Computer sciences, information science, bioinformathics (hardware development to be 2.2, social aspect to be 5.8)

  • AF - Documentation, librarianship, work with information
    BC - Theory and management systems
    BD - Information theory
    BE - Theoretical physics
    BH - Optics, masers and lasers
    IN - Informatics

Solution timeline

  • Realization period - beginning

    Mar 1, 2020

  • Realization period - end

    Jun 30, 2024

  • Project status

    K - Ending multi-year project

  • Latest support payment

    Feb 7, 2023

Data delivery to CEP

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

  • Data delivery code

    CEP24-MSM-8C-R

  • Data delivery date

    Feb 19, 2024

Finance

  • Total approved costs

    3,363 thou. CZK

  • Public financial support

    3,363 thou. CZK

  • Other public sources

    0 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

3 363 CZK thou.

Public support

3 363 CZK thou.

100%


Provider

Ministry of Education, Youth and Sports

OECD FORD

Optics (including laser optics and quantum optics)

Solution period

01. 03. 2020 - 30. 06. 2024