• Home
  • Search
  • Multimode image memory based on a cold atomic ensemble
  • Open Access IconOpen Access
  • Cite Icon29
  • https://doi.org/10.1103/physreva.87.013835Copy DOI Icon

Multimode image memory based on a cold atomic ensemble

Show More
  • Abstract
  • Literature Map
  • References
  • Citations
  • Similar Papers
Abstract

Quantum memory is one of key ingredients consisting of quantum networks, therefore storing light at single photon level is an important step for realizing quantum networks. A photon, encoded in a high-dimensional state, can significantly increase the information capacity that a photon can carry. Furthermore, quantum memories with the ability to store multiple optical modes offer advantages in speed and robustness over single mode memories in quantum communication and computation. So far, there is no any report about the storage and retrieval of multiple mode images at single photon level. Here, we give a first experimental demonstration to our best knowledge, that two spatial probe fields at single photon level, each imprinted a real image, can be stored and retrieved with a considerable visibility and similarity through electromagnetically induced transparency in cold atomic ensemble. The accomplishment of multiple modes quantum image memory would move closer towards high dimensional quantum networks.

Similar Papers
  • Supplementary Content
  • Citations3

Coherent control of entanglement with atomic ensembles

  • Jan 01, 2011
  • K S Choi
  • Book Chapter

Summary and Outlook

  • Jan 01, 2022
  • Bo Jing
  • Book Chapter
  • Citations2

Storing High-Dimensional Quantum States in a Cold Atomic Ensemble

  • Dec 27, 2017
  • Dong-Sheng Ding
  • Supplementary Content
  • Citations1

Coherent control, quantum memories and quantum repeaters

  • Jan 01, 2010
  • Archive ouverte UNIGE (University of Geneva)
  • Jiří Minář
  • Supplementary Content

Quantum Information with Entangled Photons and Cold Atomic Ensembles

  • Jan 01, 2010
  • heiDOK (Heidelberg University)
  • Xiao‐Hui Bao
  • Research Article
  • Citations18

Upconversion detection near 2 μm at the single photon level

  • Nov 21, 2013
  • Optics Letters
  • Guo-Liang Shentu +6
  • Research Article
  • Citations187

Coherent Conversion Between Microwave and Optical Photons—An Overview of Physical Implementations

  • Dec 12, 2019
  • Advanced Quantum Technologies
  • Nicholas J Lambert +3
  • Research Article
  • Citations31

Interaction of independent single photons based on integrated nonlinear optics

  • Aug 15, 2013
  • Nature Communications
  • T Guerreiro +9
  • Conference Article

Photonic crystal chips for optical communications and quantum information processing

  • Aug 28, 2008
  • Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE
  • Dirk Englund +4
  • Research Article
  • Citations9

High dimensional quantum network coding based on prediction mechanism over the butterfly network

  • Nov 11, 2021
  • Quantum Science & Technology
  • Xingbo Pan +4
  • PDF
  • Research Article
  • Citations304

Storage and retrieval of vector beams of light in a multiple-degree-of-freedom quantum memory.

  • Jul 13, 2015
  • Nature Communications
  • Valentina Parigi +5
  • Conference Article
  • Citations6

Link loss analysis for a satellite quantum communication down-link

  • Sep 20, 2020
  • Chunmei Zhang +4
  • Research Article
  • Citations665

Quantum Secure Direct Communication with Quantum Memory.

  • May 31, 2017
  • Physical Review Letters
  • Wei Zhang +5
  • PDF
  • Research Article
  • Citations39

Experimental creation of multi-photon high-dimensional layered quantum states

  • Oct 21, 2020
  • npj Quantum Information
  • Xiao-Min Hu +8
  • Research Article
  • Citations22

Scalable Quantum Memory Nodes Using Nuclear Spins in Silicon Carbide

  • Mar 08, 2023
  • Physical Review Applied
  • Shravan Kumar Parthasarathy +6
Cactus Communications logo

Copyright 2026 Cactus Communications. All rights reserved.