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2018 Fiscal Year Annual Research Report

Developing a fiber optical quantum interface using trapped atoms and nanofiber based photonic crystal cavity

Research Project

Project/Area Number 15H05462
Research InstitutionThe University of Electro-Communications

Principal Investigator

Nayak K.Prasanna  電気通信大学, フォトニックイノベーション研究センター, 特任准教授 (70551042)

Project Period (FY) 2015-04-01 – 2019-03-31
KeywordsQuantum Optics / Nanophotonics / Optical Nanofiber / Cavity QED / Quantum Information
Outline of Annual Research Achievements

In FY2018, the research had a major breakthrough. We have demonstrated an optical tweezer based single atom trapping on an optical nanofiber cavity. We show that fluorescence of single atoms loaded from an optical molasses and trapped on the nanofiber, can be readily observed in the real-time through the fiber guided modes. The fluorescence photon counts measured through the fiber guided modes, clearly shows discrete step-like signal with ON-times of 10-100 ms, indicating that single atoms are trapped and interfaced to the nanofiber.

We have carried out photon correlation measurements of the fluorescence signal to further clarify the atom number and the dynamics of the trap. The antibunching of the fluorescence signal, confirms that only single atoms are trapped on the nanofiber. The trap lifetime is measured to be 60 ms. These results open new possibilities for deterministic preparation of single atom events for quantum photonics applications on an all-fiber platform.

A key design principle for the success of the trapping scheme, is the choice of nanofiber diameter. From the theoretical simulations, we have found that for trapping Cs-atoms using magic-wavelength of 937 nm, a nanofiber diameter of 300 nm gives the optimum trapping condition. It enables a trapping minimum to be created within 200 nm from the fiber surface and a channeling efficiency of 10% can be realized at the trap position. Therefore, by implementing a nanofiber cavity with a central region of 300 nm diameter, has enabled the successful demonstration of the trapping scheme.

Research Progress Status

平成30年度が最終年度であるため、記入しない。

Strategy for Future Research Activity

平成30年度が最終年度であるため、記入しない。

  • Research Products

    (7 results)

All 2019 2018

All Journal Article (2 results) (of which Int'l Joint Research: 2 results,  Peer Reviewed: 2 results,  Open Access: 1 results) Presentation (5 results) (of which Int'l Joint Research: 4 results)

  • [Journal Article] Coherent interaction of orthogonal polarization modes in a photonic crystal nanofiber cavity2019

    • Author(s)
      J. Keloth, K. P. Nayak, J. Wang, M. Morinaga, and K. Hakuta
    • Journal Title

      Optics Express

      Volume: 27 Pages: 1453-1466

    • DOI

      https://doi.org/10.1364/OE.27.001453

    • Peer Reviewed / Open Access / Int'l Joint Research
  • [Journal Article] Nanofiber quantum photonics2018

    • Author(s)
      K. P. Nayak, M. Sadgrove, R. Yalla, F. L. Kien, and K. Hakuta
    • Journal Title

      Journal of Optics

      Volume: 20 Pages: 073001

    • DOI

      https://doi.org/10.1088/2040-8986/aac35e

    • Peer Reviewed / Int'l Joint Research
  • [Presentation] Interfacing trapped single atoms to a nanofiber cavity2019

    • Author(s)
      K. P. Nayak, J. Wang, J. Keloth and K. Hakuta
    • Organizer
      Physical Society of Japan, 74th Annual Meeting, 14 -17th March
    • Int'l Joint Research
  • [Presentation] Two-mode interference in a photonic crystal nanofiber cavity2018

    • Author(s)
      J. Keloth, K. P. Nayak, J. Wang, M. Morinaga and K. Hakuta
    • Organizer
      European Optical Society Biennial Meeting (EOSAM), 8-12th October
    • Int'l Joint Research
  • [Presentation] Fano-type resonances and avoided crossing in a photonic crystal nanofiber cavity2018

    • Author(s)
      J. Keloth, K. P. Nayak, J. Wang, M. Morinaga and K. Hakuta
    • Organizer
      Physical Society of Japan,73rd Annual Meeting, 9-12th September
    • Int'l Joint Research
  • [Presentation] Stabilization of a centimeter-long photonic crystal nanofiber cavity under ultra-high vacuum condition2018

    • Author(s)
      K. P. Nayak, J. Wang, J. Keloth and K. Hakuta
    • Organizer
      Physical Society of Japan,73rd Annual Meeting, 9-12th September
    • Int'l Joint Research
  • [Presentation] Fano-type resonances and avoided crossing in a photonic crystal nanofiber cavity2018

    • Author(s)
      J. Keloth, K. P. Nayak, J. Wang, M. Morinaga, and K. Hakuta
    • Organizer
      International Workshop on Photonics Polymer for Innovation (IWPPI), 15-18th October

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Published: 2019-12-27  

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