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Department of Electronics and Information Systems, Akita Prefectural University | 論文
- Influence of Elastic Constants on the Optical Properties of Liquid Crystal Microlenses
- Liquid-Crystal Blazed grating with Spatially Distributed Four-Level Twisted Nematic Domains
- Liquid-Crystal Reflective Beam Deflector with Microscale Alignment Pattern
- Polarization-Independent Liquid-Crystal Grating with Microscale Alignment Pattern(Electronic Displays)
- Low Threshold Field of Electro-Optic Effect in Ferroelectric Liquid Crystal with Extremely Large Spontaneous Polarization
- Dependence of Switching and Memory Times of Optical Switching Element Utilizing Ferroelectric Liquid Crystals on Thickness of Cell and Material : L: Liquid Crystals
- Ferroelectric Liquid Crystal with Extremely Large Spontaneous Polarization
- Light Scattering Properties in a Homeotropic-Aligned Liquid Crystal Microlens Array
- Error Analysis for Micrometeorological Measurements Using Bidirectional Sound Probe with Long Baseline in Wind Fields
- A Radial Molecular Orientation Using a Flow-Induced Aligning Method in a Nematic Liquid Crystal Cell
- Millimeter-Wave Transmission Properties of Nematic Liquid-Crystal Cells with a Grating-Patterned Electrode Structure
- Reduction of the Induction Field on Overhead Transmission Lines Caused by Resonance with an MF Broadcast Wave by Using the Method of Selecting Grounding Points(Electromagnetic Compatibility(EMC))
- Optical Properties of a Polymer-Stabilized Liquid Crystal Microlens
- Visualization of Molecular Orientation by Using a UV-Curable Liquid Crystal
- Optical Properties of a Polarization Converting Device Using a Nematic Liquid Crystal Cell
- A Liquid Crystal Microlens with Hole-Patterned Electrodes on Both Substrates
- Optical Properties of a Liquid Crystal Microlens with a Symmetric Electrode Structure
- Memory Effects in Nematic Liquid Crystals by a Surface Molecular Reorientation
- SH波プレ-トモ-ドデバイスを用いる振幅-位相変調(APM)
- Numerical Analysis of Suppression Effect of Emission from Printed Circuit Board by Using Ferrite Plates