課程資訊
課程名稱
光電元件程式模擬
Optoelectronic Device Program Simulation 
開課學期
102-2 
授課對象
電機資訊學院  電機工程學研究所  
授課教師
吳育任 
課號
OE5060 
課程識別碼
941 U0600 
班次
 
學分
全/半年
半年 
必/選修
選修 
上課時間
星期五2,3,4(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/1022OE5060_OSIM 
課程簡介影片
 
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課程概述

.1. Introduction
2. The approach for solving of Non-linear Poisson and Drift-diffusion solver: The Gummel Iteration Method.
3. Apply this solver for studying the current-voltage behavior of pn diode LED, photo-detector, and Solar cell
4. Semiconductor crystal material and their band structure. (Numerical methods introduced: tight binding method (TBM), k.p method (k.p) and valence force field (VFF) model for strain)
5. Application of the semiconductor band structure model for analyzing
1. The influence of strain the band structure modification in the quantum well, quantum dot and SOU technology.
2. The band structure calculation of new material system such as graphene, nanowire structures.
6. Introduction of light propagation simulation: (FD-TD method for small scale problem and Monte Carlo ray tracing method for large scale problem)
7. Combination of wave simulation program with electronic simulation program in studying the light injection and extraction of Solar cell and quantum well LED.
8. Thermo-electric material: The concept of phonon, phonon propagation, the device physics of thermelectric materials and their limitation
 

課程目標
Understand the current bottleneck of optoelectronic devices and learn how to analyze these problems by a numerical approach. We will discuss the current device problem and how to approach these topics listed in outlines listed above.
 
課程要求
Understanding basic Semiconductor Physics:
(Solid state electronics, modern physics, nano-photonnics or semiconductor optics)
familiar with at least one computer language
(Fortran, c/c++, matlab, mathematica ...)
 
預期每週課後學習時數
 
Office Hours
 
指定閱讀
期刊論文

教科書: Computational Electronics
Dragica Vasileska and Stephen M. Goodnick
Morgan & Claypool publishers

 
參考書目
Electronic and Optoelectronic Properties of Semiconductor Structures
J. Singh (Cambridge)  
評量方式
(僅供參考)
 
No.
項目
百分比
說明
1. 
期末報告 
40% 
 
2. 
平時表現 
20% 
上課參與程度 出席等 
3. 
作業 
40% 
 
 
課程進度
週次
日期
單元主題
第1週
2/21  Introduction of semiconductor equations used in the modeling
 
第2週
2/28  No Class 
第3週
3/07  Solving the Nonlinear Poisson Equations 
第4週
3/14  Poisson and Schrodinger Equations 
第5週
3/21  Poisson and Drift-Diffusion Equations 
第6週
3/28  Numerical Method, Boundary condition for solving partial differential equations
(Introduction of 1D Drift-diffusion solver) 
第7週
4/04  No class 
第8週
4/11  Poisson-Schrodinger k.p solver 
第9週
4/18  TA time, Teach of using TCAD software 
第10週
4/25  tight binding method for band structure solving 
第11週
5/02  tight binding method for band structure solving 
第12週
5/09  FD-TD for wave simulation 
第13週
5/16  FD-TD for wave simulation 
第14週
5/23  Special treatment for carrier transport model. 
第15週
5/30  quantum transport and Monte Carlo carrier transport simulation 
第16週
6/06  quantum transport 
第17週
6/13  Final homework presentation