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窒素空孔中心ダイヤモンドを用いたメタマテリアルのナノスケール磁場計測と特性評価

Research Project

Project/Area Number 16F16066
Research Category

Grant-in-Aid for JSPS Fellows

Allocation TypeSingle-year Grants
Section外国
Research Field Optical engineering, Photon science
Research InstitutionInstitute of Physical and Chemical Research

Principal Investigator

田中 拓男  国立研究開発法人理化学研究所, 光量子工学研究領域, チームリーダー (40283733)

Co-Investigator(Kenkyū-buntansha) BALOIS MARIA VANESSA  国立研究開発法人理化学研究所, 光量子工学研究領域, 外国人特別研究員
Project Period (FY) 2016-04-22 – 2018-03-31
Project Status Completed (Fiscal Year 2017)
Budget Amount *help
¥2,300,000 (Direct Cost: ¥2,300,000)
Fiscal Year 2017: ¥1,100,000 (Direct Cost: ¥1,100,000)
Fiscal Year 2016: ¥1,200,000 (Direct Cost: ¥1,200,000)
Keywords反射分光法 / 電磁場モデリング / 走査プローブ顕微鏡 / 近接場 / メタマテリアル
Outline of Annual Research Achievements

To maintain high stability of scanning probe microscope in room temperature, a compact and rigid SPM system based on a scanning tunneling microscope (STM) was designed and constructed. The new optics for illumination and detection were based on a fiber coupled system, which is useful for easy alignment. Beam splitters with varying reflectance and transmittance ratios were used to increase detection sensitivity. Through this environment control chamber, 3 kinds of environments in room temperature are possible: (1) ambient air, (2) nitrogen purged, and (3) low-vacuum (~10 Pa). With this multi-environment system, it will be easier to study samples that are sensitive to the local environment.
The unexpected result of this work is attaining subnanometer resolution of 0.6 nm using the developed environment controlled SPM system while conducting Raman experiments to test the detection efficiency of the system. From this result, it can also be assumed that the same high resolution that was observed for the electric field can also be observed when probing the magnetic field. Such high resolution is beneficial in studying nanosized metamaterial structures, especially at the edges of the structures where light tends to concentrate itself and generates hot spots.

Research Progress Status

29年度が最終年度であるため、記入しない。

Strategy for Future Research Activity

29年度が最終年度であるため、記入しない。

Report

(2 results)
  • 2017 Annual Research Report
  • 2016 Annual Research Report
  • Research Products

    (2 results)

All 2016

All Presentation (2 results) (of which Int'l Joint Research: 1 results)

  • [Presentation] Tip-enhanced THz Raman spectroscopy: an all optical method for precise determination and control of local temperature at the nanoscale2016

    • Author(s)
      Maria Vanessa Balois
    • Organizer
      The 77th Japan Society of Applied Physics (JSAP) Autumn Meeting 2016
    • Place of Presentation
      Toki Messe, Niigata City, Japan
    • Related Report
      2016 Annual Research Report
  • [Presentation] Temperature determination at the nanoscale via tip-enhanced THz-Raman spectroscopy2016

    • Author(s)
      Maria Vanessa Balois
    • Organizer
      Near-Field Optics, Nanophotonics and Related Techniques (NFO-14)
    • Place of Presentation
      Act City Hamamatsu Congress Center, Hamamatsu, Japan
    • Related Report
      2016 Annual Research Report
    • Int'l Joint Research

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Published: 2016-05-17   Modified: 2024-03-26  

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