Toriumi Hirokazu | Department Of Chemistry College Of Arts And Science The University Of Tokyo
スポンサーリンク
概要
関連著者
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Toriumi Hirokazu
Department Of Chemistry College Of Arts And Science The University Of Tokyo
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Akahane Tadashi
Deparment Of Electrical Engineering Faculty Of Engineering The Technological University Of Nagaoka
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Okutani Satoshi
Department Of Electrical Engineering Faculty Of Engineering Nagaoka University Of Technology
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Kimura Munehiro
Department Of Electrical Engineering Faculty Of Engineering Nagaoka University Of Technology
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TORIUMI Hirokazu
Department of Chemistry, College of Arts and Science, The University of Tokyo
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TADOKORO Toshiyasu
JASCO Corporation
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AKAHANE Tadashi
Department of Electrical Engineering, Nagaoka University of Technology
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Toriumi Hirokazu
Department Of Chemistry College Of Arts And Sciences The University Of Tokyo
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Akao Ken-ichi
JASCO Corporation
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木村 睦
Department Of Electronics And Informatics Ryukoku University
著作論文
- Design and Implementation of Near-Field Scanning Optical Microscope for Observation of Interfacial Liquid Crystal Orientation : Structure and Mechanical and Thermal Properties of Condensed Matter
- Analysis of Totally Reflected Light from Liquid Crystal Cell using Renormalized Ellipsometry
- Observation of Nematic Liquid Crystal Director Reorientation at the Interface between Substrate and Liquid Crystal Layer by Total Reflection Ellipsometry
- Nematic Director Reorientation Dynamics Studied by Time-Resolved Fourier-Transform Infrared Spectroscopy
- Two-Dimensional Analysis of Liquid Crystal Orientation at In-Plane Switching Substrate Surface Using a Near-Field Scanning Optical Microscope
- Real Time Analysis of Liquid Crystal Surface Orientation Dynamic Using Polarization Modulated Spectroellipsometry
- Quantitative Analysis of Nematic Director Reorientation Dynamics Studied by Time-Resolved Spectroscopic Ellipsometry
- Analysis of Totally Reflected Light from Liquid Crystal Cell using Renormalized Ellipsometry
- Dynamics of Surface-Stabilized Ferroelectric Liquid Crystals at the Alignment Layer Surface Studied by Total-Reflection Ellipsometry : Structure and Mechanical and Thermal Properties of Condensed Matter
- Time-Resolved FT-IR Study of Electric-Field Induced Homogeneous-to-Homeotropic Transition of Nematic 4-Pentyl-4'-cyanobiphenyl : Condensed Matter