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Continuous-wave room-temperature diamond maser

Author

Listed:
  • Jonathan D. Breeze

    (Imperial College London
    London Centre for Nanotechnology, Imperial College London)

  • Enrico Salvadori

    (Institute of Structural and Molecular Biology, University College London
    London Centre for Nanotechnology
    School of Biological and Chemical Sciences, Queen Mary University of London)

  • Juna Sathian

    (Imperial College London)

  • Neil McN. Alford

    (Imperial College London
    London Centre for Nanotechnology, Imperial College London)

  • Christopher W. M. Kay

    (Institute of Structural and Molecular Biology, University College London
    London Centre for Nanotechnology
    University of Saarland)

Abstract

A continuous-wave room-temperature maser is demonstrated by combining a cavity with a high Purcell factor with the narrow linewidth of nitrogen–vacancy defect centres in diamond.

Suggested Citation

  • Jonathan D. Breeze & Enrico Salvadori & Juna Sathian & Neil McN. Alford & Christopher W. M. Kay, 2018. "Continuous-wave room-temperature diamond maser," Nature, Nature, vol. 555(7697), pages 493-496, March.
  • Handle: RePEc:nat:nature:v:555:y:2018:i:7697:d:10.1038_nature25970
    DOI: 10.1038/nature25970
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    Cited by:

    1. Chan‐Hoong Leong & Soo Jiuan Tan & Elizabeth A. Minton & Siok Kuan Tambyah, 2021. "Economic hardship and neighborhood diversity: Influences on consumer well‐being," Journal of Consumer Affairs, Wiley Blackwell, vol. 55(4), pages 1226-1248, December.

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