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J-GLOBAL ID:200901053771976527   Update date: May. 16, 2024

Nose Toshiaki

ノセ トシアキ | Nose Toshiaki
Affiliation and department:
Job title: Professor
Research field  (4): Electronic devices and equipment ,  Optical engineering and photonics ,  Crystal engineering ,  Applied materials
Research keywords  (2): 光機能材料・デバイス応用 ,  Applied Optics and Quantum Optics
Research theme for competitive and other funds  (23):
  • 2018 - 2021 Development of Microscope Based Observation and Measurement System by Using Electrooptical Effects of Liquid Crystals
  • 2015 - 2018 Development of Liquid Crystal Millimeter-Wave Control Devices Based on Porous Polymer Materials by Using Quasi-Optic Approach
  • 2011 - 2013 Study on Liquid Crystal Millimeter-wave Control Device Obtained with the Integration on Planar Type Waveguide
  • 2008 - 2010 Study on Liquid Crystal Hybrid Type of Millimeter-wave Controlling Devices by Using Coplanar Waveguide
  • 2005 - 2007 Research on Diffraction Type of Millimeter-Wave Control Devices Using Liquid Crystal Materials
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Papers (105):
  • Asuka Yagi, Michinori Honma, Ryota Ito, Toshiaki Nose. Electrically Controllable Light Scattering Properties of Nematic Liquid Crystal/Polyfluorene Gel Devices. IEICE Trans. Electron. 2024. 107. 2. 29-33
  • Ryota Ito, Hayato Sekiya, Iwao Kawayama, Michinori Honma, Masayoshi Tonouchi, Toshiaki Nose. Influence of dichroism on the optical properties of a twisted nematic liquid crystal cell in the terahertz region. Applied Optics. 2023
  • Michinori Honma, Takashi Sase, Ryota Ito, Toshiaki Nose. Millimeter-Wave Single-Pixel Imaging Using Electrically-Switchable Liquid-Crystal Mask. IEICE Transactions on Electronics. 2023. 106. 2. 34-40
  • Toshiaki Nose, Hayato Watanabe, Keiju Okano, Naoko Fujita, Jun Murata, Hajime Muraguchi, Noriaki Ozaki, Michinori Honma, Ryota Ito. Shear direction switching phenomena in twisted nematic liquid crystal cells for novel differential interference contrast imaging systems. Journal of the Society for Information Display. 2022. 30. 9. 671-679
  • Ryota ITO, michinori HONMA, Toshiaki NOSE. Continuous wave terahertz common path phase shifting interference using liquid crystal phase shifter. Japanese Journal of Applied Physics. 2021
more...
MISC (35):
  • Ryota Ito, Michinori Honma, Toshiaki Nose. Improvement of THz phase sensing system by using LC phase shifter under magnetic field application. Emerging Liquid Crystal Technologies XIX. 2024
  • Study of Liquid Crystal Fresnel Lenses Fabricated Using a 3D Printer for Millimeter-Wave Application. 2017. 4. 113-118
  • Fundamental Properties of a Twin-Array Antenna System Combined with a Liquid Crystal Millimeter-Wave Phase Shifter. 2016. 3. 167-171
  • Fundamental study of liquid crystal device in the terahertz frequency region Toward imaging applications. 2015. 2. 31-35
  • A Liquid Crystal Millimeter-Wave Phase Shifter using n-type Liquid Crystal. 2015. 2. 159-163
more...
Lectures and oral presentations  (41):
  • Photovoltaic effect of organic dye-doped nematic liquid crystal
    (応用物理学会春季学術講演会講演予稿集(CD-ROM) 2021)
  • Study on the pattern formation of extremely thick liquid crystal cells for THz application under high driving voltages
    (応用物理学会春季学術講演会講演予稿集(CD-ROM) 2020)
  • Study on Lateral Shearing Properties of Liquid Crystal Cell and Its Potential of Differential Interference Microscopy (II)
    (応用物理学会春季学術講演会講演予稿集(CD-ROM) 2020)
  • 水素結合性液晶で生じる配向パターンがTHz波制御デバイスに与える影響
    (日本液晶学会討論会講演予稿集(CD-ROM) 2020)
  • 長い螺旋周期を有するコレステリック液晶のTHz波透過特性
    (応用物理学会秋季学術講演会講演予稿集(CD-ROM) 2019)
more...
Professional career (2):
  • (BLANK) (Tohoku University)
  • (BLANK) (Tohoku University)
Work history (4):
  • 1999/04 - 現在 Akita Prefectural University Faculty of Systems Science and Technology
  • 1995 - 1999 Akita University
  • 1991 - 1995 Akita University
  • 1985 - 1991 Akita University
Awards (3):
  • 2022/12 - IDW'22 Best Student Paper Award
  • 2021/12 - IDW'21 Outstading Lightning Talk Paper Award
  • 2020/12 - IDW'20 Best paper Award
Association Membership(s) (5):
Optical Society of America ,  日本光学会 ,  応用物理学会 ,  電子情報通信学会 ,  日本液晶学会
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