課程資訊
課程名稱
表面電漿子導論
Introduction to Surface Plasmon 
開課學期
110-2 
授課對象
工學院  應用力學研究所  
授課教師
郭茂坤 
課號
AM7165 
課程識別碼
543 M5260 
班次
 
學分
3.0 
全/半年
半年 
必/選修
選修 
上課時間
星期二7,8,9(14:20~17:20) 
上課地點
應231 
備註
總人數上限:10人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1102AM7165_ 
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課程概述

543 M5260 表面電漿子導論
Introduction to Surface Plasmon

Instructor: Mao-Kuen Kuo 郭茂坤(IAM room 320)
Time: Th 7, 8, 9 (14:20—17:20)
Place: IAM room 231
Credit units: 3
Grading: participation/discussion 35%, midterm 20%, final project 45%,
Office hours: Th 2, 3, 4 or by appointment

Description:
This course will cover the fundamentals and the physical concepts that are necessary to understand plasmonics and surface plasmons. In particular, fundamental aspects and physics of interaction of light with nanoscale metallic structures will be discussed. Topics will include emerging applications involving various plasmonics systems, surface plasmons on a single interface, thin film plasmons, localized plasmons on nanoparticles, and plasmonic nano-antennas.
This course is intended to be conducted under a project-based learning environment. The course will rely heavily on in-class participation and discussion. In addition to one quiz, an individual project will be assigned to students to apply their new knowledge of plasmonics. Students are expected to use either Matlab or Fortran to accomplish the project.

Prerequisites: Electromagnetics, Applied Mathematic (I), Fortran or other computer languages

Outline:
1. Introduction to Plasmonics General
2. Electromagnetics of metals (Maxwell’s equations and EM wave propagation, dielectric function of the free electron, dispersion)
3. Optical properties of metals
4. Metallic Nanoparticle : Fundamentals & Synthesis
5. Localized Surface Plasmon Resonance
6. Mie theory
7. Dyadic Green’s function
8. Optical properties of metal-dielectric composites
9.. Selected topics in surface plasmons 

課程目標
Goal:
To introduce students to the fundamentals and the physical concepts related to surface plasmon. Upon completion of this course, students will be able to do the following:
1. Demonstrate a familiarity with basic physics behind surface plasmon.
2. Show a fundamental understanding of the physical principles of electromagnetics of metals
3. Develop basic understanding of the fundaments of the electromagnetic description of light propagation in plasmonic structures. 
課程要求
The course will rely heavily on in-class participation and discussion. In addition to one quiz, an individual project will be assigned to students to apply their new knowledge of plasmonics. Students are expected to use either Matlab or Fortran to accomplish the project.

Prerequisites: Electromagnetics, Applied Mathematic (I), Fortran or other computer languages 
預期每週課後學習時數
 
Office Hours
 
指定閱讀
待補 
參考書目
1. D. Said & W. A. Challenger, Modern Introduction to Surface Plasmons, Cambridge University Press 2010.
2. S. A. Maier, Plasmonics: Fundamentals and Applications, Springer, 2007.
3. M. Quinten, Optical Properties of Nanoparticle Systems: Mie and Beyond, Wiley 2011..
4. C. T. Tai, Dyadic Green Functions in Electromagnetic Theory, IEEE, New York, 1994.
 
評量方式
(僅供參考)
 
No.
項目
百分比
說明
1. 
participation, discussion  
35% 
 
2. 
quiz 
20% 
 
3. 
final project 
45% 
 
 
課程進度
週次
日期
單元主題
第1週
2/14-18  Introduction 
第2週
2/21-25  Electromagnetics of metals (Maxwell's equation, Poynting vector & some terminologies) 
第3週
2/28-3/4  Electromagnetics of metals (EM wave propagation, dielectric function of the free electron, dispersion) 
第4週
3/7-11  Optical properties of metals 
第5週
3/14-18  Metallic nanoparticle : fundamentals & synthesis 
第6週
3/21-25  Localized surface plasmon resonance 
第7週
3/28-4/1  Mie theory 
第8週
4/4-8  Dyadic Green’s function 
第9週
4/11-15  Optical properties of metal-dielectric composites 
第10週
4/18-22  Selected topics in surface plasmons 
第11週
4/25-29  Selected topics in surface plasmons 
第12週
5/2-6  Selected topics in surface plasmons 
第13週
5/9-13  Selected topics in surface plasmons 
第14週
5/16-20  Presentation of final projects 
第15週
5/23-27  Presentation of final projects 
第16週
5/30-6/3  期末考 
第17週
6/6-10  彈性補充教學 
第18週
6/13-17  彈性補充教學