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Furube, Akihiro (50.0%) / Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Nanotechnology/Materials [Nanomaterials]
Lecture: Nano-Optical Measument Engineering (Graduate School), Presentation Method (D) (Graduate School), laser measurement (Bachelor Course), laser measurement (Bachelor Course), Advanced Photoenergy Nano-Engineering (Graduate School), Specilal Lectures on Optical Materials and Decices 2 (Bachelor Course), Specilal Lectures on Optical Materials and Decices 3 (Bachelor Course), Lecture in Optical Materials and Devices, Part 2 (Graduate School), Molecular Spectroscopy (Bachelor Course), Basic Photochemistry (Bachelor Course), Applied Photochemistry (Bachelor Course), Introduction to Science and Technology (Common Curriculum)
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Kozuki, Yasunori (50.0%) / Professor   [Detail]
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Academic Degree: doctor engineering
Field of Study: Ecosystem Engineering, 津波防災学, 環境工学
Lecture: STEM Practice (Bachelor Course), Presentation Method (D) (Graduate School), Practice on Civil Engineering Projects (Bachelor Course), Mitigation Engineering (Graduate School), Life Design (Common Curriculum), Risk Communication (Graduate School), Theory of Risk and Crisis Management (Graduate School), Introduction to Science and Technology (Common Curriculum), Environmental Studies (Bachelor Course), Environmental Risk (Bachelor Course), Advanced Lecture in Social Risk Engineering (Graduate School), Civil and Environmental Engineering Laboratory (Bachelor Course), Civil and Environmental Engineering Design Exercise (Bachelor Course), Research Approaches in Science and Technology A (Graduate School), Risk Management of Government and Company (Graduate School), Risk Management Practical Exercize of Government and Company (Graduate School), Practical Training of Risk Management (Graduate School), Practical Training of Risk Management (Graduate School)
Subject of Study: 沿岸生態系の修復,再生, 環境学習の手法, 防災学習の手法, 地震津波防災 (ecosystem in coastal zone, Tridentiger obscurus, Amagasaki canal, education for disaster prevention, mitigation, Environmental education, concrete-block wall, Hypoxia)
Yanagiya, Shin-ichiro (50.0%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Surface science, Crystal Growth, Applied Optics
Lecture: Introduction to STEM (Bachelor Course), STEM Practice (Bachelor Course), オリエンテーション1年 (Bachelor Course), Introduction to New Business (Common Curriculum), Management Theory of New Business (Graduate School), laser measurement (Bachelor Course), laser measurement (Bachelor Course), Seminar to Optical Systems (Bachelor Course), Optical Science and Technology Seminar 1 (Bachelor Course), Optical Science and Technology Laboratory 1 (Bachelor Course), Optical Science and Technology Computation Exercise (Bachelor Course), Optical Crystal Engineering (Graduate School), Graduation Work (Bachelor Course), Applied Photochemistry (Bachelor Course), Ethics for Engineers and Scientists (Common Curriculum), Thermodynamics (Bachelor Course), Introduction to Science and Technology (Common Curriculum), Interdisciplinary Seminar in Science and Technology (Graduate School), Reading Scientific Papers (Bachelor Course), Polymer Chemistry (Bachelor Course)
Subject of Study: Crystal Designs for nano phtonics, Mesoscopic physics in cells, Hybrid microscopy using advanced optical microscope with atomics force microscope (microscope, optics, surface, nano, crystal growth)
Okamoto, Toshihiro (50.0%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Nonlinear Optics, Plasmonics, Nanophotonics, Metamaterial
Lecture: SIH(Strike while the Iron is Hot) Training (Common Curriculum), Advanced Lecture in Nanophotonics (Graduate School), Photonic Device (Graduate School), Seminar to Optical Systems (Bachelor Course), Optical Devices (Bachelor Course), Optical Science and Technology Seminar 1 (Bachelor Course), Optical Science and Technology Laboratory 2 (Bachelor Course), Optical Science and Technology Computation Exercise (Bachelor Course), Lecture in Optical Materials and Devices, Part 1 (Graduate School), Optical Propertics of Materials (Graduate School), Introduction to Science and Technology (Common Curriculum)
Subject of Study: 全光学型光スイッチ及び光双安定現象の研究, 局在表面プラズモン特性を用いたナノ構造非線形光デバイスの研究, 電磁メタマテリアルの非線形光学応答に関する研究, プラズモン導波路に関する研究 (nonlinear optics, 光スイッチ現象, 光双安定現象, nanostructure, 局在表面プラズモン, メタマテリアル, プラズモン導波路)
Haraguchi, Masanobu (50.0%) / Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Micro Optics, Nanophotonics, Plasmonics, Quantum Optics
Lecture: SIH(Strike while the Iron is Hot) Training (Common Curriculum), Introduction to STEM (Bachelor Course), Advanced Lecture in Nanophotonics (Graduate School), Photonic Device (Graduate School), Presentation Method (D) (Graduate School), Laser Physics and Applications (Bachelor Course), Laser Physics and Applications (Bachelor Course), Optical and Electronic Properties of Materials (Bachelor Course), Optical and Electronic Properties of Materials 1 (Bachelor Course), Optical and Electronic Properties of Materials 2 (Bachelor Course), Drill and Practice in Engineering Mathematics (Bachelor Course), Specilal Lectures on Optical Materials and Decices 1 (Bachelor Course), Lecture in Optical Materials and Devices, Part 1 (Graduate School), Optical Propertics of Materials (Graduate School), Applied Photochemistry (Bachelor Course), Introduction to Technical English (Bachelor Course), Technical English Fundamentals 2 (Bachelor Course), Introduction to Science and Technology (Common Curriculum), Interdisciplinary Seminar in Science and Technology (Graduate School), Electrical Circuit Theory 2 (Bachelor Course)
Subject of Study: Nanophotonics with plasmons, optical properties of the nonlinear micro sphere, plasmonic waveguide device (plasmonics, nanophotonics, surface plasmon polariton, localized plasmon, nonlinear optics, dielectric microsphere, optical mode, photonic band), photonic crystal, micro-sphere (photonic crystal, light localization, optical property)
Kawakami, Retsuo (50.0%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: 半導体/プラズマエレクトロニクス
Lecture: オリエンテーション1年 (Bachelor Course), Plasma Science and Technology (Graduate School), Introduction to Technical English (Bachelor Course), Interdisciplinary Seminar in Science and Technology (Graduate School), Advanced Theory of Electron Devices (Graduate School), Electronic Physics (Bachelor Course), Graduate Research on Electrical and Electronic Engineering (Graduate School), Electrical and Electronic Engineering Elementary Laboratory (Bachelor Course), Electrical and Electronic Engineering Laboratory 3 (Bachelor Course), Special Lectures on Electrical and Electronic Engineering (Bachelor Course)
Subject of Study: 半導体プラズマ粒子と発光のシナジー効果によるGaNエッチングダメージの解明, DBDプラズマ/プラズマJETのグリーンテクノロジーへの応用, 薄膜系光触媒の反応活性化のための表面処理テクノロジー, LED光触媒反応を応用した鮮度維持テクノロジー, 半導体プラズマ表面反応のモデリング, ワイドギャップ半導体のプラズマエッチングダメージ解析 (semiconductor, 非平衡プラズマ, 窒化物半導体, 薄膜系光触媒, LED, JETプラズマ, DBDプラズマ, バイオ, シナジー効果, 食品, ワイドギャップ半導体)