Information processing at the speed of light

被引:0
作者
Muhammad AbuGhanem
机构
[1] FacultyofScience,AinShamsUniversity
关键词
D O I
暂无
中图分类号
O431.2 [量子光学]; TN918.4 [密码的加密与解密];
学科分类号
摘要
In recent years, quantum computing has made significant strides, particularly in light-based technology. The introduction of quantum photonic chips has ushered in an era marked by scalability, stability, and cost-effectiveness, paving the way for innovative possibilities within compact footprints. This article provides a comprehensive exploration of photonic quantum computing, covering key aspects such as encoding information in photons, the merits of photonic qubits, and essential photonic device components including light squeezers, quantum light sources, interferometers, photodetectors, and waveguides. The article also examines photonic quantum communication and internet, and its implications for secure systems, detailing implementations such as quantum key distribution and long-distance communication. Emerging trends in quantum communication and essential reconfigurable elements for advancing photonic quantum internet are discussed. The review further navigates the path towards establishing scalable and fault-tolerant photonic quantum computers, highlighting quantum computational advantages achieved using photons. Additionally, the discussion extends to programmable photonic circuits, integrated photonics and transformative applications. Lastly, the review addresses prospects, implications, and challenges in photonic quantum computing, offering valuable insights into current advancements and promising future directions in this technology.
引用
收藏
页码:13 / 74
页数:62
相关论文
共 827 条
  • [1] High-speed integrated QKD system.[J].REBECKA SAX;ALBERTO BOARON;GIANLUCA BOSO;SIMONE ATZENI;ANDREA CRESPI;FADRI GRüNENFELDER;DAVIDE RUSCA;AWS AL-SAADI;DANILO BRONZI;SEBASTIAN KUPIJAI;HANJO RHEE;ROBERTO OSELLAME;HUGO Z1BINDEN;.Photonics Research.2023, 06
  • [2] On-chip path encoded photonic quantum Toffoli gate.[J].MENG LI;CHU LI;YANG CHEN;LAN-TIAN FENG;LINYU YAN;QIAN ZHANG;JUEMING BAO;BI-HENG LIU;XI-FENG REN;JIANWEI WANG;SHUFENG WANG;YUNAN GAO;XIAOYONG HU;QIHUANG GONG;YAN LI;.Photonics Research.2022, 07
  • [3] Ultralow-loss compact silicon photonic waveguide spirals and delay lines.[J].SHIHAN HONG;LONG ZHANG;YI WANG;MING ZHANG;YIWEI XIE;DAOXIN DAI;.Photonics Research.2022, 01
  • [4] Chip-based squeezing at a telecom wavelength.[J].F.MONDAIN;T.LUNGHI;A.ZAVATTA;E.GOUZIEN;F.DOUTRE;M.DE MICHELI;S.TANZILLI;V.D'AURIA;.Photonics Research.2019, 07
  • [5] Telecom wavelength single photon sources.[J].Xin Cao;Michael Zopf;Fei Ding;.Journal of Semiconductors.2019, 07
  • [6] Universal bound on sampling bosons in linear optics and its computational implications.[J].Man-Hong Yung;Xun Gao;Joonsuk Huh;.National Science Review.2019, 04
  • [7] Quantum interference with independent single-photon sources over 300?km fiber.[J].You Xiang;Zheng Ming-Yang;Chen Si;Liu Run-Ze;Qin Jian;Xu Mo-Chi;Ge Zheng-Xuan;Chung Tung-Hsun;Qiao Yu-Kun;Jiang Yang-Fan;Zhong Han-Sen;Chen Ming-Cheng;Wang Hui;He Yu-Ming;Xie Xiu-Ping;Li Hao;You Li-Xing;Schneider Christian;Yin Juan;Chen Teng-Yun;Benyoucef Mohamed;Huo Yong-Heng;H?fling Sven;Zhang Qiang;Lu Chao-Yang;Pan Jian-Wei.None.2022,
  • [8] High spectral selectivity metal-semiconductor-metal photodetector.[J].Averin S. V.;Kotov V. M..Optical and Quantum Electronics.2022, 1
  • [9] Achieving the ultimate end-to-end rates of lossy quantum communication networks
    Winnel, Matthew S.
    Guanzon, Joshua J.
    Hosseinidehaj, Nedasadat
    Ralph, Timothy C.
    [J]. NPJ QUANTUM INFORMATION, 2022, 8 (01)
  • [10] Single Photon Detectors and Metrology.[J].Buckley Sonia Mary;Stephens M;Lehman J.H..Electrochemical Society Transactions.2022, 3