Electromagnetically induced transparency quantum memory for non-classical states of light

被引:9
|
作者
Lei, Xing [1 ]
Ma, Lixia [1 ]
Yan, Jieli [1 ]
Zhou, Xiaoyu [1 ]
Yan, Zhihui [1 ,2 ]
Jia, Xiaojun [1 ,2 ]
机构
[1] Shanxi Univ, Inst Opto Elect, State Key Lab Quantum Opt Quantum Opt Devices, Taiyuan 030006, Peoples R China
[2] Shanxi Univ, Collaborat Innovat Ctr Extreme Opt, Taiyuan 030006, Peoples R China
来源
ADVANCES IN PHYSICS-X | 2022年 / 7卷 / 01期
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
Quantum memory; electromagnetically induced transparency; non-classical states of light; ATOMIC ENSEMBLES; MATTER INTERFACE; SQUEEZED STATES; GROUP-VELOCITY; STORAGE; ENTANGLEMENT; PROPAGATION; REALIZATION; RETRIEVAL; PHOTONS;
D O I
10.1080/23746149.2022.2060133
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Quantum memory (QM) enables quantum state mapping between flying and stationary quantum states and is the building block of quantum information science, which enables to achieve a plethora of quantum information protocols, such as quantum state transfer across remote quantum nodes, distributed quantum logic gate, and quantum precession measurement network. Great progresses of quantum memories have been achieved, and electromagnetically induced transparency (EIT) is one of the well-understood approaches of QM. Quantum states of light are the essential quantum resources for implementing quantum enhanced task, and thus it is a long-standing goal to store and release non-classical states of light. This paper presents an up-to-date review on recent developments in EIT-based QM: EIT quantum memories have been realized in warm atomic cell, cold atoms and solid system, respectively; and EIT mechanism has been applied to store and release single photon, squeezed state, entangled photon pairs and multipartite entangled states of optical modes. [GRAPHICS] .
引用
收藏
页数:27
相关论文
共 50 条
  • [31] Electromagnetically induced transparency and slow light in quantum degenerate atomic gases
    Jen, H. H.
    Xiong, Bo
    Yu, Ite A.
    Wang, Daw-Wei
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2013, 30 (11) : 2855 - 2863
  • [32] Strong-laser-field physics, non-classical light states and quantum information science
    Bhattacharya, U.
    Lamprou, Th
    Maxwell, A. S.
    Ordonez, A.
    Pisanty, E.
    Rivera-Dean, J.
    Stammer, P.
    Ciappina, M. F.
    Lewenstein, M.
    Tzallas, P.
    REPORTS ON PROGRESS IN PHYSICS, 2023, 86 (09)
  • [33] Quantum dot arrays: Preparation and detection of non-classical states
    Mahler, G
    Wawer, R
    SUPERLATTICES AND MICROSTRUCTURES, 1997, 21 (01) : 7 - 13
  • [34] Advances in quantum dots for classical and non-classical light sources Invited Paper
    Yasuhiko Arakawa
    Satoshi Iwamoto
    Satoshi Kako
    Masahiro Nomura
    Denis Guimard
    Chinese Optics Letters, 2008, (10) : 718 - 723
  • [35] Generation of non-classical photon states in superconducting quantum metamaterials
    Mukhin, S. I.
    Fistul, M. V.
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2013, 26 (08):
  • [36] Deterministic preparation of highly non-classical macroscopic quantum states
    Latmiral, Ludovico
    Mintert, Florian
    NPJ QUANTUM INFORMATION, 2018, 4
  • [37] Deterministic preparation of highly non-classical macroscopic quantum states
    Ludovico Latmiral
    Florian Mintert
    npj Quantum Information, 4
  • [38] Non-classical photonic spin texture of quantum structured light
    Yang, Li-Ping
    Jacob, Zubin
    COMMUNICATIONS PHYSICS, 2021, 4 (01)
  • [39] Generation of Non-Classical Light Using Semiconductor Quantum Dots
    Trivedi, Rahul
    Fischer, Kevin A.
    Vuckovic, Jelena
    Mueller, Kai
    ADVANCED QUANTUM TECHNOLOGIES, 2020, 3 (01)
  • [40] Non-classical photonic spin texture of quantum structured light
    Li-Ping Yang
    Zubin Jacob
    Communications Physics, 4