課程資訊
課程名稱
固態物理專題:進階與應用
Special Topics on Solid State Physics: Advances and Applications 
開課學期
103-2 
授課對象
理學院  應用物理學研究所  
授課教師
林敏聰 
課號
Phys8096 
課程識別碼
222ED3210 
班次
 
學分
全/半年
半年 
必/選修
選修 
上課時間
星期二8,9,A(15:30~19:15) 
上課地點
新物618 
備註
本課程以英語授課。
總人數上限:30人 
Ceiba 課程網頁
http://ceiba.ntu.edu.tw/1032Phys8096_ 
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課程概述

This is a seminar and discussion class which will cover a wide range of topics which are subject to intense interest in present-day Solid State Physics. Students will read about a specific topic (chosen by themselves, with the guidance of the Professor), before giving a short presentation in the class. Students should try to give a clear introduction to the basic principles of the topic, and emphasize applications which may arise.

Students may choose any topic in modern Solid State Physics, including (but not limited to) the following:

Graphene: Physics, Synthesis, and Applications
Transition metal dichalcogenides (e.g. MoS2) and other 2-D semiconductors
Superconductivity (including high-Tc superconductors)
Dielectricity and ferroelectricity
Multiferroic materials
Memristors
Phase-change memory
Spintronics and spin dependant transport
Topological Insulators and Quantum Spin Hall systems
The Rashba and Dresselhaus effects
The Hanle effect and spin-FETs
Ferromagnetism and anti-ferromagnetism
Half-metallic materials
The Tunneling magneto-resistance (TMR) effect and magnetic tunneling junctions
Organic spintronics
Organic photovoltaics
Molecular electronics
The Kondo effect and the quantum blockade
Plasmons, polarons and polaritons
Optical processes and excitons
Advanced nano-scale characterization techniques
Scanning probe microscopy (SEM, STM, AFM, SPEM,...)
etc...
 

課程目標
課程要求
預期每週課後學習時數
 
Office Hours
 
指定閱讀
 
參考書目
待補 
評量方式
(僅供參考)
   
課程進度
週次
日期
單元主題
Week 1
2/24  Intro., Ch.1 of SSP 
Week 3
3/10  Ch.2 of SSP 
Week 4
3/17  Spintronics
 
Week 6
3/31  Thermometric materials (Tessera Alemneh)
Graphene: Physics, Synthesis, and Applications (Arvin Eskandari)
Topological Insulators (王美芳) 
Week 7
4/07  Quantum hall effect (朱庭慶)
Topological Insulators and Quantum Spin Hall systems (彭冠瑋)
Quantum Hall effect (郭家宏)  
Week 8
4/14  Half-metallic materials (Amol R. Deshmulch)
The Kondo effect (周結)
Transition metal dichalcogenides and other 2-D semiconductors (Arvin Eskandari)  
Week 9
4/21  Midterm week 
Week 10
4/28  Perovskite solar cell and its energy conversion efficiency (Tessera Alemneh)
Organic Ferroelectric transistor memories (Nouman Ali)
The Kondo effect and the quantum blockade (朱庭慶)  
Week 11
5/05  Topological insulator (郭家宏)
The Rashba and Dresselhaus effects (王美芳)
Liquid Crystals (Arvin Eskandari)  
Week 13
5/19  Spintronics (周結)
Organic spintronics (彭冠瑋)
Organic LED (Nouman Ali)  
Week 14
5/26  Energy storage devices (Amol R. Deshmulch)
Superconductivity (Tessera Alemneh)
Anderson localization (郭家宏)  
Week 15
6/02  Ferromagnetism and anti-ferromagnetism (周結)
The Hanle effect (朱庭慶)
Carbon nanotube based electronics (Nouman Ali)
Molecular electronics (Amol R. Deshmulch) 
Week 16
6/09  Spin transistor (王美芳)
Phase-change memory (彭冠瑋)