課程資訊
課程名稱
半導體光學
Semiconductor Optics 
開課學期
101-2 
授課對象
學程  光電科技學程  
授課教師
吳育任 
課號
OE5004 
課程識別碼
941 U0090 
班次
 
學分
全/半年
半年 
必/選修
選修 
上課時間
星期二2,3,4(9:10~12:10) 
上課地點
明達225 
備註
總人數上限:24人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1012Semioptics 
課程簡介影片
 
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課程概述

1. Structure properties of Semiconductor: Crystal growth, crystal structures,
Strain in heterostructure, polar materials, semiconductor Electronic equations,
Semiconductor p-n diodes.
2. Reviews on quantum mechanic theory: Schrodinger equations, square quantum
well, time-independent/time independent perturbation theory.
3. Semiconductor band structure: Block theorem of crystal, tight binding method,
spin orbit coupling, K.P method.
4. Band structure modification: Band structure of alloys, Band structure in
quantum well and quantum dot, strain and deformation potential theory, polar
heterostructures.
5. Transport and Scattering theory: Defect and carrier-carrier scattering
(ionized impurity scattering, charged dislocation scattering, alloy scattering
and interface roughness scattering) Lattice vibrations, phonon scattering
(acoustic phonon scattering and optical phonon scattering, deformation potential
scattering.
6. Optical properties of semiconductors: Maxwell’s equations and vector
potential, interband transitions, indirect interband transitions, charge
injection, radiative recombination, non-radiative recombination, and LEDs.
7. Excitonic effects: Excitonic states in semiconductors, optical properties
with inclusion of excitonic effects, excitonic states in quantum well, excitonic
absorption, and excitonic broadening.
8. Modulations of optical properties: Modulation of optical properties,
Electro-optic effect, and quantum confined stark effect.
9. Selected Topics of Current Research: Optical properties of intrinsic excitons in reduced dimension, Exciton under external fields - electric, strain, and magnetic fields.Prepare students with knowledge and skills to understand and analyze the milestone papers in the area of semiconductor optics, extend the learned knowledge to analyze the linear optical process occurred in low dimensional quantum confined structures 

課程目標
Student in this course will learn how to Calculating the bandstructure of semiconductor device, carrier transport mechanism, carrier-photon absorption and recombination calculation, etc.. 
課程要求
評分: 作業: 30% 期中考: 30-35% 期末考: 35-40% 
預期每週課後學習時數
 
Office Hours
 
指定閱讀
 
參考書目
教科書
Jasprit Singh, "Electronic and Optoelectronic Properties of Semiconductor Structures", Cambridge ISBN 0-521-82379-X 新月書局代理

參考書目
(1) C.F. Klingshirn, “Semiconductor Optics,” Springer-Verlag (1995, ISBN 3-540-58312-2) (歐亞書局經銷)
(2) E.L. Ivchenko and G. E. Pikus, “Superlattices and Heterostructures:
symmetry and optical phenomena”, Springer Verlag (1995, 臺大工圖 QC611.6.06 I89) 
評量方式
(僅供參考)
   
課程進度
週次
日期
單元主題
第1週
2/19  Introduction
Basic crystal theory

(Semiconductor Optics-2011 is the slide of 2011 courses) 
第2週
2/26  Strain-Stress relation, Piezoelectric polarization, and Review of quantum mechanics 
第3週
3/05  Bloch theorem, Tight binding method 
第4週
3/12  Spin orbital coupling, perturbation theory

Also the k.p program of the future class practice 
第5週
3/19  perturbation theory, K.P


(TBM code is attached. Note: This is an example code and may not be error free)  
第6週
3/26  L5, the general band structure, DOS, k.p computer program 
第7週
4/02  Band strtuture, doping, and alloy 
第8週
4/09  strain deformation of conduction band 
第9週
4/16  strain deformation of valence band 
第10週
4/23  Midterm 
第11週
4/30  Boltzmann Transport 
第12週
5/07  Elastic and Inelastic scattering 
第13週
5/14  Monte Carlo Simulation (Monte Carlo code is added) 
第14週
5/21  出國開會 擇期補課 5月25 日下午一點半 左右補課 
第15週
5/28  Band to Band transition 
第18週
06/18  Final