Research on Diffraction Type of Millimeter-Wave Control Devices Using Liquid Crystal Materials
Project/Area Number |
17560314
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Research Category |
Grant-in-Aid for Scientific Research (C)
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Allocation Type | Single-year Grants |
Section | 一般 |
Research Field |
Electron device/Electronic equipment
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Research Institution | Akita Prefectural University |
Principal Investigator |
NOSE Toshiaki Akita Prefectural University, Faculty of System Scienoe & Technology, Professor (00180745)
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Co-Investigator(Kenkyū-buntansha) |
NOZOKIDO Tatsuo Toyama University, Faculty of Engineering, Associate Professor (00261149)
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Project Period (FY) |
2005 – 2007
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Project Status |
Completed (Fiscal Year 2007)
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Budget Amount *help |
¥2,980,000 (Direct Cost: ¥2,800,000、Indirect Cost: ¥180,000)
Fiscal Year 2007: ¥780,000 (Direct Cost: ¥600,000、Indirect Cost: ¥180,000)
Fiscal Year 2006: ¥1,300,000 (Direct Cost: ¥1,300,000)
Fiscal Year 2005: ¥900,000 (Direct Cost: ¥900,000)
|
Keywords | Liquid Crystal / Millimeter Waves / Fresnel Lens / Membrane Films / Nano Particles / フレネルレンズ / 分子配向 / 屈折率 / 損失 |
Research Abstract |
Although usual nematic liquid crystals (LC) have considerable large refractive index anisotropy in the millimeter-wave (MMW) region, still more large anisotropy is desired for practical MMW device applications because of the extremely long wavelength comparing with visible rays. We prepare Au-nano particle contained LC materials to improve their performance. In this stage, clear difference with the pure LCs has not been found out yet in the MMW region. However, it is usually very difficult to have uniform mixture with nano particle, then the experimental method can be expanded to other various nano particles to search excellent combinations. Extremely thick LC layer is also necessary to construct the LC devices for MMW application, and then we adopt membrane films for supporting the thick LC layer. We investigate the LC molecular orientation anisotropy induced by the film using the capacitance measurement method, because the molecular alignment effect is also very important for the LC device performance. It is found that the microscopic fine fiber in the membrane film can well align the LC molecules and this type of membrane is useful for constructing the thick LC layer without any stretching treatment. Since we are planning to adopt Fresnel structure to reduce the LC device thickness, a Fresnel test lens is fabricated by machining of plastic plate. It is found that only 4 steps of machining resolution and 3 periods of Fresnel ring are is enough to get excellent lens performance in the MMW region. Stacked electrode structure is necessary to drive the thick LC layers, then we proposed the rolling type of stacked electrode structure to fabricate large size of MMW LC lens devices. We investigated the transmission properties of the new type electrode structure and excellent focusing properties have been confirmed by combining with the plastic test lens.
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Report
(4 results)
Research Products
(54 results)
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[Presentation] ミリ波用フレネルレンズの基礎特性2007
Author(s)
瀬野、伊東、本間、能勢
Organizer
電気関係学会東北支部連合大会、1HO7
Place of Presentation
弘前大
Year and Date
2007-08-23
Description
「研究成果報告書概要(和文)」より
Related Report
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[Presentation] ナノ粒子混合液晶のミリ波伝搬特性2006
Author(s)
齋藤 精一郎、泉谷 重征、本間 道則、能勢 敏明
Organizer
2006年日本液晶学会討論会、3A11
Place of Presentation
秋田大
Year and Date
2006-09-15
Description
「研究成果報告書概要(和文)」より
Related Report
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[Presentation] 導波管法によるナノ粒子混合液晶の測定2006
Author(s)
齋藤 精一郎、泉谷 重征、本間 道則、能勢 敏明
Organizer
平成18年電気関係学会東北支部連合大会、118
Place of Presentation
秋田大
Year and Date
2006-08-31
Description
「研究成果報告書概要(和文)」より
Related Report
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