◎系所教育目標: 本系所之發展方向以光電科學與固態電子為主,在紮實的學術研究基礎下,並與產業界積極合作,發展前瞻性學術研究及技術開發。
本系研究團隊分成三大主軸,彼此相互連結,三大主軸分別為:
(一)光電科學:液晶光學、非線性光學、光學薄膜、光學設計、光電元件、光纖光學、雷射物
理、太陽能電池。
(二)固態物理:量子元件、表面及介面物理、磁性薄膜、奈米物理、自旋電子學。
(三)半導體:半導體薄膜、半導體奈米製程或元件模擬、TFT製程或設計。 |
◎核心能力 | 關聯性 |
1.培養應用物理知能 | 5 關聯性最強 |
2.培養光電科學知能 | 5 關聯性最強 |
3.培養固態電子知能 | 5 關聯性最強 |
4.培養實驗技能 | 1 關聯性最弱 |
◎本學科內容概述: Fundamental principles and applications of quantum mechanics will be instructed in this course. |
◎本學科學習目標: Fundamental principles and applications of quantum mechanics will be instructed in this course. |
◎教學進度: |
週次 | 主題 | 教學內容 | 教學方法 |
01
| Electron spin and the Pauli principle | Electron spin and the Pauli principle | 講授。 |
02
| Electron spin and the Pauli principle | Electron spin and the Pauli principle | 講授。 |
03
| Many-electron atoms | Many-electron atoms | 講授。 |
04
| Many-electron atoms | Many-electron atoms | 講授。 |
05
| Many-electron atoms | Many-electron atoms | 講授。 |
06
| Molecular symmetry | Molecular symmetry | 講授。 |
07
| Molecular symmetry | Molecular symmetry | 講授。 |
08
| Electronic structure of diatomic molecules | Electronic structure of diatomic molecules | 講授。 |
09
| Electronic structure of diatomic molecules | Electronic structure of diatomic molecules | 講授。 |
10
| Electronic structure of diatomic molecules | Electronic structure of diatomic molecules | 講授。 |
11
| Theorems of molecular quantum mechanics | Theorems of molecular quantum mechanics | 講授。 |
12
| Theorems of molecular quantum mechanics | Theorems of molecular quantum mechanics | 講授。 |
13
| Theorems of molecular quantum mechanics | Theorems of molecular quantum mechanics | 講授。 |
14
| Molecular electronic structure | Molecular electronic structure | 講授。 |
15
| Molecular electronic structure | Molecular electronic structure | 講授。 |
16
| Electron-correlation methods | Electron-correlation methods | 講授。 |
17
| Electron-correlation methods | Electron-correlation methods | 講授。 |
18
| Final exam | Final exam | 習作。 |
◎課程要求: (Space) |
◎成績考核 課堂參與討論20% 期中考40% 期末考40% |
◎參考書目與學習資源 I. N. Levine, "Quantum Chemistry." 6th ed., Prentice Hall, 2008.
1. J. J. Sakurai, "Modern Quantum Mechanics." Revised Edition, 1st ed., Pearson Education, Taiwan, 2008.
2. J. J. Sakurai, "Modern Quantum Mechanics." Benjamin/Cummings Publishing, Menlo Park, 1985.
3. E. Merzbacher, "Quantum Mechanics." 3rd edition. John Wiley & Sons, New York, 1998. |