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Tokushima UniversityGraduate School of Technology, Industrial and Social SciencesDivision of Science and TechnologyElectrical and Electronic EngineeringMaterial Science and Device
Tokushima UniversityInstitute of Post-LED Photonics
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Tokushima UniversityFaculty of Science and TechnologyDepartment of Science and TechnologyElectrical and Electronic EngineeringMaterial Science and Device
Tokushima UniversityGraduate School of Advanced Technology and ScienceSystems Innovation EngineeringElectrical and Electronic EngineeringMaterial and Device Science
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Tokushima UniversityResearch ClustersResearch Clusters (Registered)1903005 光センサー機能一体型紫外発光ダイオードの開発
Tokushima UniversityResearch ClustersResearch Clusters (Registered)1903003 メタマテリアルを用いた高感度ガスセンシング技術の開発
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(Sakai, Shiro) (42.7%) / Professor Emeritus   [Detail]
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Academic Degree: Dr. of Engineering
Field of Study: Semiconductor Physical Electronics
Subject of Study: A research on nitride semiconductors (gallium nitride, semiconductor devices)
Takashima, Yuusuke (39.8%) / Assistant Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Optical Device, Nanophotonics, Semiconductor Physical Electronics
Lecture: STEM Practice (Bachelor Course), Interdisciplinary Seminar in Science and Technology (Graduate School), Electromagnetic Theory (I) and Exercise (Bachelor Course), Electromagnetic Theory 1 and Exercise (Bachelor Course), Electromagnetic Theory (II) and Exercise (Bachelor Course), Electromagnetic Theory 2 and Exercise (Bachelor Course), Graduate Research on Electrical and Electronic Engineering (Graduate School), Graduate Seminar on Electrical and Electronic Engineering (Graduate School), Electrical and Electronic Engineering Design Laboratory (Bachelor Course), Fundamentals of Electrical and Electronic Engineering (Bachelor Course), Special Lectures on Electrical and Electronic Engineering (Bachelor Course)
Subject of Study: photonic devices with nano structure (nanostructure, photonic device)
Haraguchi, Masanobu (27.9%) / 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)
Nishino, Katsushi (16.7%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Semiconductor Physical Electronics
Lecture: Presentation Method (D) (Graduate School), Photonic Devices (Bachelor Course), Photonic Semiconductor Device Physics (Graduate School), Semiconductor Physics (Bachelor Course), Advanced Theory of Semiconductors (Graduate School), Graduation Work (Bachelor Course), Interdisciplinary Seminar in Science and Technology (Graduate School), Quantum Mechanics for Semiconductor Physics (Bachelor Course), Reading Scientific Papers (Bachelor Course), Electromagnetic Theory (II) and Exercise (Bachelor Course), Electromagnetic Theory 2 and Exercise (Bachelor Course), Graduate Research on Electrical and Electronic Engineering (Graduate School), Electrical and Electronic Engineering Elementary Laboratory (Bachelor Course), Special Lectures on Electrical and Electronic Engineering (Bachelor Course)
Subject of Study: AlN等窒化物半導体の結晶成長,物性評価,デバイス応用 (AlN, バルク結晶成長, 物性評価)
Nagamatsu, Kentaro (10.3%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: 電気電子工学
Lecture: Electrical and Electronic Engineering Design Laboratory (Bachelor Course), Electrical and Electronic Engineering Elementary Laboratory (Bachelor Course), Electrical and Electronic Engineering Laboratory 3 (Bachelor Course)
Subject of Study: 電子・電気材料工学 (窒化物半導体, light emitting diode, laser diode, transistor, process)
Tomita, Takuro (7.4%) / Associate Professor   [Detail]
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Academic Degree: Doctor of Science
Field of Study: 光物質科学, Optical Condensed Matter Physics, Semiconductor Physics
Lecture: Presentation Method (D) (Graduate School), Advanced Optoelectronic Materials Science (Graduate School), Semiconductor Physics (Bachelor Course), Ethics for Engineers and Scientists (Common Curriculum), Optical and Functional Inorganic Materials (Graduate School), Interdisciplinary Seminar in Science and Technology (Graduate School), Graduate Research on Electrical and Electronic Engineering (Graduate School)
Subject of Study: Laser-induced material modification, Laser processing, Laser-induced nano-periodic structures (femtosecond laser processing/modification), Raman Spectroscopy, Ultrafast Spectroscopy, Magneto-Optical Spectroscopy (optical properties of solid), Bond-Raman-Polarizability model in Wide-band-gap semiconductors, Electron-Phonon interactions in semiconductors (半導体物理)
Okada, Tatsuya (1.3%) / Professor   [Detail]
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Academic Degree: Ph.D.
Field of Study: texture control, Crystallographic Defect
Lecture: STEM Practice (Bachelor Course), Engineering Materials (Bachelor Course), オリエンテーション3年 (Bachelor Course), Presentation Method (D) (Graduate School), Practice of Elementary Machine Creation (Bachelor Course), Graduation Thesis (Bachelor Course), Engineering English (Bachelor Course), Engineering English 1 (Bachelor Course), Technical English Fundamentals 1 (Bachelor Course), Technical English Fundamentals 2 (Bachelor Course), Materials Science (Bachelor Course), Engineering Materials 1 (Bachelor Course), Mechanical Properties of Materials (Graduate School), Introduction to Science and Technology (Common Curriculum), Controlling Physical Properties of Crystalline Materials (Graduate School)
Subject of Study: SEM/EBSD analysis of deformed and recrystallized textures in pure metals (texture control, recrystallization, crystal plasticity, single crystal, bicrystal, SEM/EBSD), TEM observation of crystallographic defects in SiC thin films (SiC, crystallographic defect, epitaxial film, transmission electron microscopy)
Shimomura, Naoyuki (1.1%) / Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Pulsed Power, 照明·視環境設計, Educational Technology, Illuminating Engineering
Lecture: Fundamentals of Energy Engineering (Bachelor Course), Engineering Design Exercise (Bachelor Course), Introduction of Engineering (Bachelor Course), Presentation Method (D) (Graduate School), Graduation Work (Bachelor Course), Ethics for Engineers and Scientists (Common Curriculum), Illuminating and Electric Heating Engineering (Bachelor Course), Interdisciplinary Seminar in Science and Technology (Graduate School), Research Approaches in Science and Technology D (Graduate School), Reading Scientific Papers (Bachelor Course), Advanced Theory of Electric Power Control Systems (Graduate School), Electrical Engineering Design Exercise (Bachelor Course), Introduction of Electrorical Engineering (Bachelor Course), Graduate Research on Electrical and Electronic Engineering (Graduate School), Electrical and Electronic Engineering Laboratory 1 (Bachelor Course), Advanced High Voltage Engineering (Graduate School)
Subject of Study: Development of Nanosecond Pulsed Power Generator, Generation of Ozone by Nanosecond Pulsed Power, NOx Treatement by Nanosecond Pulsed Power, Water Treatement by Nanosecond Pulsed Power, Applying Nanosecond Pulse Electric Fields (nsPEFs) on Tumor in an Effort to Develop Cancer Therapy, Development of Processing Technology of Biomass Fuel with Pulsed Power Techniques (pulsed power, nanosecond pulsed power, ozone, nitrogen oxide: NOx, water treatment, bioelectrics), 照明最適化サーバの構築と公開, 光源位置検知に関する研究 (照明, 視環境, optimization, GIS, GA), Studies on Frontiers in Education, Studies in Advanced Applications of LED
Yamaguchi, Kenzo (0.8%) / Associate Professor   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Nanotechnology/Materials [Nanobioscience], Manufacturing technology (mechanical, electrical/electronic, chemical engineering) [Electronic devices and equipment], Nanotechnology/Materials [Nano/micro-systems]
Lecture: 光システムセミナー, 理工学概論
Subject of Study:
Okamoto, Toshihiro (0.8%) / 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)
(Fukui, Masuo) (0.8%) / Professor Emeritus   [Detail]
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Academic Degree: 工学博士
Field of Study: 光物性, 光計測, 光電子工学
Subject of Study: 球と光の相互作用, フォトニック結晶を用いた光デバイス開発, 非線形光学効果に基づく光デバイス開発, ナノスケール領域観測用の光計測装置開発, 表面電磁波の物性 (微小球, フォトニック結晶, 非線形光学効果, 近接場光学, 光熱分光法, 表面ポラリトン)
Yasui, Takeshi (0.3%) / Professor   [Detail]
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Academic Degree: Dr. Eng., Dr. Med. Sci.
Field of Study: THz instrumentation and metrology, Biomedical Optics, Applied Optics, Applied Optics
Lecture: オリエンテーション3年 (Bachelor Course), Presentation Method (D) (Graduate School), Micro-Nano Engineering (Graduate School), Technical English Fundamentals 2 (Bachelor Course), Mechanical Measurement (Bachelor Course), Mechanical Measurement 1 (Bachelor Course), Mechanical Measurement 2 (Bachelor Course), Design of Machine Elements and Drawing (Bachelor Course), Introduction to Science and Technology (Common Curriculum), Scientific Measurements (Bachelor Course), Nondestructive Metrology (Graduate School)
Subject of Study: High-precision THz spectroscopy, Real-time THz imaging, THz frequency metrology, THz frequency comb, THz applications, Collagen-sensitive SHG microscopy for biomedical applications, 光コム, ファイバーセンシング
Nishio, Yoshifumi (0.3%) / Professor   [Detail]
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Academic Degree: Ph.D
Field of Study: Nonlinear Circuit Technology
Lecture: Introduction to STEM (Bachelor Course), オリエンテーション1年 (Bachelor Course), Presentation Method (D) (Graduate School), Advanced Circuit Theory (Graduate School), Network Analysis (Bachelor Course), Interdisciplinary Seminar in Science and Technology (Graduate School), Communication in English (Bachelor Course), Transient Analysis (Bachelor Course), Electrical Circuit Theory (I) and Exercise (Bachelor Course), Electrical Circuit Theory 1 and Exercise (Bachelor Course), Electrical Circuit Theory (II) and Exercise (Bachelor Course), Electrical Circuit Theory 2 and Exercise (Bachelor Course), Graduate Research on Electrical and Electronic Engineering (Graduate School), Advanced Nonlinear Circuit Technology (Graduate School)
Subject of Study: Analysis and Applications of Chaos in Nonlinear Circuits, Analysis of Synchronization Phenomena in Coupled Oscillators, Development of Analyzing Methods of Large Scale Nonlinear Circuits, Design and Applications to Image Processing of Cellular Neural Networks, Development of Neural Network Architecture (nonlinear circuits, chaos, coupled oscillatory circuits, synchronization phenomena, complex systems, cellular neural networks, circuit design, self-organizing map, neurodynamics)
(Hashizume, Masaki) (0.3%) / Professor Emeritus   [Detail]
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Academic Degree: 博士(工学)
Field of Study: Electronic Circuit Engineering
Subject of Study: Current Test of CMOS Circuits and Test Circuit Design, Design and Test of Computers, Defect-Based Tests of CMOS Circuits, Mixed Signal Tests, Electrical Test of Logic Circuits on PCBs (Current Test, Design for Testability, Memory Test, Analog Test, Logic Circuit, Lead Open Test)