Clock Synchronization with Correlated Photons

被引:20
|
作者
Spiess, Christopher [1 ,2 ]
Toepfer, Sebastian [2 ,3 ]
Sharma, Sakshi [1 ,2 ]
Krzic, Andrej [1 ,2 ]
Cabrejo-Ponce, Meritxell [1 ,2 ]
Chandrashekara, Uday [2 ]
Doell, Nico Lennart [2 ]
Rielaender, Daniel [2 ,4 ]
Steinlechner, Fabian [2 ,5 ]
机构
[1] Friedrich Schiller Univ Jena, Furstengraben 1, D-07743 Jena, Germany
[2] Fraunhofer Inst Appl Opt & Precis Engn, Albert Einstein Str 7, D-07745 Jena, Germany
[3] Tech Univ Darmstadt, Inst Angew Phys, Schlossgartenstr 7, D-64289 Darmstadt, Germany
[4] European Space Operat Ctr ESOC, Robert Bosch Str 5, D-64293 Darmstadt, Germany
[5] Friedrich Schiller Univ Jena, Abbe Ctr Photon, Albert Einstein Str 6, D-07745 Jena, Germany
关键词
KEY DISTRIBUTION; QUANTUM; GENERATION; STABILITY; NETWORK; LIGHT; SPEED;
D O I
10.1103/PhysRevApplied.19.054082
中图分类号
O59 [应用物理学];
学科分类号
摘要
Event synchronization is a ubiquitous task, with applications ranging from 5G technology to indus-trial automation and smart power grids. The emergence of quantum communication networks will further increase the demand for precise synchronization in the optical and electronic domains, which implies sig-nificant resource overhead, such as the requirement for ultrastable clocks or additional synchronization lasers. Here, we show how temporal correlations of photons may be harnessed for synchronization in quantum networks. We achieve stable synchronization jitter <68 ps with as few as 44 correlated detection events per 100-ms data package and demonstrate feasibility in realistic emulated high-loss link scenarios, including atmospheric turbulence. In contrast to previous work, this is accomplished without any exter-nal timing reference and only simple crystal oscillators. Our approach replaces the optical and electronic transmission of timing signals with classical communication and computer-aided postprocessing. It can be easily integrated into a wide range of quantum communication networks and could pave the way to future applications in entanglement-based secure time transmission.
引用
收藏
页数:22
相关论文
共 50 条
  • [31] CLOCK SYNCHRONIZATION SYSTEMS (REVIEW)
    ZELIGER, AN
    TELECOMMUNICATIONS AND RADIO ENGINEERING, 1975, 29 (03) : 48 - 52
  • [32] Clock synchronization with dispersion cancellation
    Giovannetti, V
    Lloyd, S
    Maccone, L
    Wong, FNC
    PHYSICAL REVIEW LETTERS, 2001, 87 (11) : art. no. - 117902
  • [33] Network clock frequency synchronization
    Gurewitz, Omer
    Cidon, Israel
    Sidi, Moshe
    25TH IEEE INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATIONS, VOLS 1-7, PROCEEDINGS IEEE INFOCOM 2006, 2006, : 883 - +
  • [34] Harmonious internal clock synchronization
    Wedde, HF
    Freund, W
    EUROMICRO RTS 2000: 12TH EUROMICRO CONFERENCE ON REAL-TIME SYSTEMS, PROCEEDINGS, 2000, : 175 - 182
  • [35] IMPLEMENTATION ISSUES IN CLOCK SYNCHRONIZATION
    BECK, M
    SRIKANTH, TK
    TOUEG, S
    LECTURE NOTES IN COMPUTER SCIENCE, 1990, 448 : 97 - 107
  • [36] Optimal Clock Synchronization with Signatures
    Lenzen, Christoph
    Loss, Julian
    PROCEEDINGS OF THE 2022 ACM SYMPOSIUM ON PRINCIPLES OF DISTRIBUTED COMPUTING, PODC 2022, 2022, : 440 - 449
  • [37] Requirements for Secure Clock Synchronization
    Narula, Lakshay
    Humphreys, Todd
    PROCEEDINGS OF THE 30TH INTERNATIONAL TECHNICAL MEETING OF THE SATELLITE DIVISION OF THE INSTITUTE OF NAVIGATION (ION GNSS+ 2017), 2017, : 3134 - 3139
  • [38] On decoherence in quantum clock synchronization
    Boixo, S.
    Caves, C. M.
    Datta, A.
    Shaji, A.
    LASER PHYSICS, 2006, 16 (11) : 1525 - 1532
  • [39] CLOCK SYNCHRONIZATION SYSTEMS (REVIEW).
    Zeliger, A.N.
    Telecommunications and Radio Engineering (English translation of Elektrosvyaz and Radiotekhnika), 1975, 29-30 (03): : 48 - 52
  • [40] Online Incremental Clock Synchronization
    Masoume Jabbarifar
    Michel Dagenais
    Alireza Shameli-Sendi
    Journal of Network and Systems Management, 2015, 23 : 1034 - 1066