課程名稱 |
固態光學元件 Solid State Optical Devices |
開課學期 |
100-1 |
授課對象 |
電機資訊學院 電機工程學研究所 |
授課教師 |
楊英杰 |
課號 |
EE5100 |
課程識別碼 |
921 U5700 |
班次 |
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學分 |
3 |
全/半年 |
半年 |
必/選修 |
選修 |
上課時間 |
星期五6,7,8(13:20~16:20) |
上課地點 |
博理103 |
備註 |
總人數上限:47人 |
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課程簡介影片 |
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核心能力關聯 |
本課程尚未建立核心能力關連 |
課程大綱
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課程概述 |
I. Semiconductor Materials IV. Recombination in Semiconductors
1) Overview and introduction 1) Radiation and nonradiative recombination
2) Crystal structure 2) Band-to-band recombination
3) Band structure 3) Doping effects
4) Physical properties 4) Other recombination processes
5) Heterostructures and superlattices 5) Material characterization techniques
II. Optical Contants in Solids V. Photodetectors
1) Refractive index and reflectivity 1) Photoconductive detector
2) Absorption coefficient 2) Photovoltaic detectors
3) Wavequides and Fabry-Perot cavity 3) Performance characteristics (electrical, optical)
III. Absorption of Light 4) Design criteria (wavelength, time response)
1) Photon-electron interaction VI. Semiconductor Light Emitting Diodes (LEDs) and Lasers
2) Direct and indirect transition 1) Stimulated emission and gain
3) Doping effects 2) optical and electrical pumping
4) Exciton and other absorption process 3) Semiconductor laser operation
5) Material characterization techniques 4) Laser design
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課程目標 |
I. Semiconductor Materials IV. Recombination in Semiconductors
1) Overview and introduction 1) Radiation and nonradiative recombination
2) Crystal structure 2) Band-to-band recombination
3) Band structure 3) Doping effects
4) Physical properties 4) Other recombination processes
5) Heterostructures and superlattices 5) Material characterization techniques
II. Optical Contants in Solids V. Photodetectors
1) Refractive index and reflectivity 1) Photoconductive detector
2) Absorption coefficient 2) Photovoltaic detectors
3) Wavequides and Fabry-Perot cavity 3) Performance characteristics (electrical, optical)
III. Absorption of Light 4) Design criteria (wavelength, time response)
1) Photon-electron interaction VI. Semiconductor Light Emitting Diodes (LEDs) and Lasers
2) Direct and indirect transition 1) Stimulated emission and gain
3) Doping effects 2) optical and electrical pumping
4) Exciton and other absorption process 3) Semiconductor laser operation
5) Material characterization techniques 4) Laser design
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預期每週課後學習時數 |
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指定閱讀 |
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