課程資訊
課程名稱
光學系統設計
Optical System Design 
開課學期
108-1 
授課對象
電機資訊學院  光電工程學研究所  
授課教師
蘇國棟 
課號
OE5031 
課程識別碼
941EU0400 
班次
 
學分
3.0 
全/半年
半年 
必/選修
選修 
上課時間
星期四7,8,9(14:20~17:20) 
上課地點
明達303 
備註
本課程以英語授課。
總人數上限:10人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1081OE5031_ 
課程簡介影片
 
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課程概述

The primary goal of this course is to provide the basic tools and knowledge needed to design optical systems. At the end of the course, students will be able to take system requirements, select possible components and approaches, create candidate designs and analyze and optimize their performance. They will learn and utilize standard optical design tools, particularly ray-tracing, as well as learning how to create custom system models with wave, polarization, or Gaussian-beam optical modeling. 

課程目標
1)Ray optics: basic design techniques
2)Wave optics in isotopic Media
3)Design concepts for optical instruments: microscope, telescope, camera lenses
4)Aberration in optical system: real world problem
5)How to select optical components: lenses, fibers, optical source and detectors
6)Optical CAD tools discussion: ZEMAX education version
 
課程要求
General physics, geometry, calculus 
預期每週課後學習時數
 
Office Hours
另約時間 備註: gdjsu@ntu.edu.tw 
指定閱讀
Rober E. Fisher and Biljana Tadic-Galeb, “Optical System Design”, McGraw Hill, ISBN 978-0-07-128233-8
 
參考書目
Warren J. Smith, “Modern Optical Engineering”, McGraw-Hill Professional; 3rd
edition, (ISBN: 0071363602)
 
評量方式
(僅供參考)
 
No.
項目
百分比
說明
1. 
Midterm 
30% 
Closed book 
2. 
Final 
35% 
Closed book 
3. 
Project report 
35% 
Oral presentation (10%) Written report (25%) 
 
課程進度
週次
日期
單元主題
Week 1
2019/09/12  Introduction 
Week 2
2019/09/19  Basic Optics Equations for Ray Optics 
Week 3
2019/09/26  Ray Tracing Program Introduction 
Week 4
2019/10/03  Computer Aided Design 
Week 5
2019/10/10  National Holiday Day (No Class) 
Week 6
2019/10/17  Image Quality 
Week 7
2019/10/24  OPD and Aberration Corrections I 
Week 8
2019/10/31  OPD and Aberration Corrections II 
Week 9
2019/11/07  Midterm 
Week 10
2019/11/14  Glass Selection 
Week 11
2019/11/21  Spherical and Aspheric Surfaces 
Week 12
2019/11/28  Design Forms and Processes 
Week 13
2019/12/5  Gaussian Beam and Diffractive Optics 
Week 14
2019/12/12  Project Presentation 
Week 15
2019/12/19  Polarization and Optical Thin Films 
Week 16
2019/12/26  Tolerance and Productivity 
Week 17
2020/1/2  Photonics Devices 
Week 18
2020/1/9  Final