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Development of Microscope Based Observation and Measurement System by Using Electrooptical Effects of Liquid Crystals

Research Project

Project/Area Number 18K04928
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeMulti-year Fund
Section一般
Review Section Basic Section 29010:Applied physical properties-related
Research InstitutionAkita Prefectural University

Principal Investigator

Nose Toshiaki  秋田県立大学, システム科学技術学部, 教授 (00180745)

Project Period (FY) 2018-04-01 – 2021-03-31
Project Status Completed (Fiscal Year 2020)
Budget Amount *help
¥4,290,000 (Direct Cost: ¥3,300,000、Indirect Cost: ¥990,000)
Fiscal Year 2020: ¥1,560,000 (Direct Cost: ¥1,200,000、Indirect Cost: ¥360,000)
Fiscal Year 2019: ¥1,170,000 (Direct Cost: ¥900,000、Indirect Cost: ¥270,000)
Fiscal Year 2018: ¥1,560,000 (Direct Cost: ¥1,200,000、Indirect Cost: ¥360,000)
Keywords液晶 / 複屈折イメージング / 微分干渉イメージング / 微分干渉観察 / 複屈折 / DICプリズム / 電気光学効果 / 光計測
Outline of Final Research Achievements

Two types of novel microscopic observation systems were developed by using precise phase shifting and polarization rotation effects of liquid crystal (LC) cells. First one is "Birefringence imaging and measurement system based on phase shifting technique", which is utilizing a potential of LCs as precise control phase shifters. Furthermore, the system was extended to the versatile birefringence imaging system by introducing 45°twisted nematic (TN) LC cells.
Second one is "Differential interference contrast imaging system by using TNLC cells", which utilizes lateral shear and polarization rotation effects of 90°TNLCs. Furthermore, a potential of extension to the total differential imaging system was demonstrated by switching the twist direction of the TN cells.

Academic Significance and Societal Importance of the Research Achievements

学術的な意義としては、これまで注目されていなかったツイストネマッチク液晶セルの複屈折現象(二重像の形成)の理解と分子配向計算に基づく定量的な解析手法を確立した点が挙げられる。また、位相差を生じない45°の偏光回転素子が実現できる事も実験的に示された。これらの基礎検討に基づき、実際に市販の顕微鏡に液晶セルを組込む事により、電子的に調整可能な機能を持つ複屈折観察および微分干渉観察システムを実現した。これらの成果は、優れた電気光学材料としての液晶の可能性について、新たな応用分野の開拓に寄与するする社会的意義も大きい。

Report

(4 results)
  • 2020 Annual Research Report   Final Research Report ( PDF )
  • 2019 Research-status Report
  • 2018 Research-status Report
  • Research Products

    (12 results)

All 2021 2020 2019 2018

All Journal Article (4 results) (of which Peer Reviewed: 2 results,  Open Access: 2 results) Presentation (8 results) (of which Int'l Joint Research: 5 results,  Invited: 4 results)

  • [Journal Article] Characterization of Hydrogen-Bonded Liquid Crystal Materials in the Millimeter-Wave Region2021

    • Author(s)
      Nose Toshiaki、Ito Ryota、Honma Michinori
    • Journal Title

      IEEE Microwave and Wireless Components Letters

      Volume: 31 Issue: 5 Pages: 453-456

    • DOI

      10.1109/lmwc.2021.3062841

    • Related Report
      2020 Annual Research Report
    • Peer Reviewed
  • [Journal Article] Improved terahertz phase sensing by using liquid crystal phase shifter2020

    • Author(s)
      Rota Ito, Michinori Honma and Toshiaki Nose
    • Journal Title

      Proceedings of the SPIE

      Volume: 11303 Pages: 21-21

    • DOI

      10.1117/12.2543039

    • Related Report
      2019 Research-status Report
  • [Journal Article] 導波管型液晶ミリ波制御デバイスの磁場駆動特性2019

    • Author(s)
      能勢、猪野、真坂、伊藤、伊東、本間
    • Journal Title

      秋田県立大学ウェブジャーナルB

      Volume: 6 Pages: 96-100

    • NAID

      120006734015

    • Related Report
      2019 Research-status Report
    • Open Access
  • [Journal Article] Potential of Liquid-Crystal Materials for Millimeter-Wave Application2018

    • Author(s)
      Nose Toshiaki、Ito Ryota、Honma Michinori
    • Journal Title

      Applied Sciences

      Volume: 8 Issue: 12 Pages: 1-15

    • DOI

      10.3390/app8122544

    • Related Report
      2018 Research-status Report
    • Peer Reviewed / Open Access
  • [Presentation] Distinct optical properties of hydrogen-bonded liquid crystal materials in millimeter-wave region2021

    • Author(s)
      T.Nose, R.Ito, and M.Honma
    • Organizer
      Photonics West 2021
    • Related Report
      2020 Annual Research Report
    • Int'l Joint Research / Invited
  • [Presentation] Simple differential interference contrast imaging system by using twisted nematic liquid crystal cells2020

    • Author(s)
      T.Nose, K.Okano, N.Fujita, J.Murata, H.Muraguchi, N.Ozaki, M.Honma, and R.Ito
    • Organizer
      IDW 2020
    • Related Report
      2020 Annual Research Report
    • Int'l Joint Research / Invited
  • [Presentation] 液晶における横ずれ効果と微分干渉観察応用の検討(Ⅱ)2020

    • Author(s)
      能勢、石坂、本間、伊東、岡野、藤田、村田、村口、尾崎
    • Organizer
      第67回応用物理学会春季学術講演会
    • Related Report
      2019 Research-status Report
  • [Presentation] Application of double refraction properties in liquid crystal cells to differential interferometry2019

    • Author(s)
      T.Nose, S.Ishizaka, K.Okano, N. Fujita, J.Murata, H.Muraguchi, N.Ozaki, M.Honma, and R.ito
    • Organizer
      IMID2019
    • Related Report
      2019 Research-status Report
    • Int'l Joint Research / Invited
  • [Presentation] 液晶セルにおける横ずれ特性と微分干渉観察応用の検討2019

    • Author(s)
      能勢、石坂、本間、伊東、岡野、藤田、村田、村口、尾崎
    • Organizer
      第66回応用物理学会春季学術講演会、9a-PA2-1
    • Related Report
      2018 Research-status Report
  • [Presentation] 平板回路を用いた液晶ミリ波位相変調器における磁界印加の効果2019

    • Author(s)
      飯山、伊東、本間、真坂、伊藤、能勢
    • Organizer
      第66回応用物理学会春季学術講演会、9a-PA2-4
    • Related Report
      2018 Research-status Report
  • [Presentation] Basic performance of rectangular waveguide type liquid crystal phase shifter driven by magnetic field2018

    • Author(s)
      T.Nose, T.Ito, R.Ito, and M.Honma
    • Organizer
      IRMMW2018, Mo-POS-46
    • Related Report
      2018 Research-status Report
    • Int'l Joint Research
  • [Presentation] Structurally simplified LC millimeter-wave phase shifter based on microstrip line2018

    • Author(s)
      T.Nose, K.Iiyama, M.Masaka, K.Ito, R.Ito, and M.Honma
    • Organizer
      IDW2018, LCT7-2
    • Related Report
      2018 Research-status Report
    • Int'l Joint Research / Invited

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Published: 2018-04-23   Modified: 2022-01-27  

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