材料光學
The Optical Properties of Materials
| 節 | 週三 | 週四 |
|---|---|---|
3 10:10–11:00 | 材料光學 CY203 2 節連堂 | |
4 11:10–12:00 | ||
8 16:30–17:20 | 材料光學 CY203 |
* 根據陽明交大上課時間表所列
This class aims to discuss the optical properties of materials. The class starts from the classical description of optical transmission and reflection followed by the quantum mechanical description of optical absorption and emission in materials and effect of excitons. The materials mentioned throughout this class include semiconductors, metals, low dimensional material and organic materials. Therefore, the objective of this class is to teach student to understand the classical treatment of optical propagation in the solid materials, quantum mechanical treatment of absorption and emission in materials, the importance of the exciton in the materials, and the origin of the optical nonlinear effect in the crystals.
Electromagnetics, Modern Physics
Test books Lecture notes Reference books 1. Optical processes in semiconductor, J.J. Pankov, Dover Pub. (1971) 2. Fundamentals of semiconductors, 3rd ed, P.Y. Yu and M. Cardona, Springer, (2001) 3. Physics of optoelectronic devices, S. L. Chuang, John Wiley & Son, (2009) 4. Quantum Optics: An introduction, M. Fox, Oxford University Press, (2006)
Homework and exam: Homework: Assigned regularly (50%) Quiz and attendance: (10%) Midterm (Open book) (20%) and Final report (20%) Grading policy: The homework due is two weeks after it is assigned. Late turn-in of one day shall lose 10 points of that homework. Late turn-in of 5 days shall lose all points of that homework. The homework assignment will be published on e-Campus3.0上。
- 1. Introduction to the Fundamental Optical Properties of Materials
- 2. Energy band theory of solid
- 3. Quantum model of light-matter interaction
- 4. Interband absorption in semiconductor
- 5. Luminescence
- 6. Quantum confined structures
- 7. Concept of Excitons
- 8. Concept of Phonons
- 9. Free electrons
| 週次 | 主題 |
|---|---|
| 第 1 週 | 1. Introduction to the Fundamental Optical Properties of Materials 1.1 Optical materials |
| 第 2 週 | 1.2 Propagation of light in an optical medium 1.3 The dipole oscillator model for the optical constants and refractive index |
| 第 3 週 | 1.4 Local field corrections 1.5 The Kramers-Kronig relationships and dispersion **supplementary: Review of quantum mechanics |
| 第 4 週 | 1.6 Optical anisotropy: birefringence **supplementary: Review of quantum mechanics |
| 第 5 週 | 1.7 Chirality 2. Energy band theory of solid 2.1 Introduction to crystal structure **supplementary: Review of quantum mechanics |
| 第 6 週 | 2.2 Introduction to Bloch function 2.3 Kronig Penney’s model and implication of band structure **supplementary: Review of quantum mechanics |
| 第 7 週 | 2.3 Kronig Penney’s model and implication of band structure |
| 第 8 週 | 3. Quantum model of light-matter interaction 3.1 Introduction to time-dependent Perturbation theory 3.2 Harmonic field interaction 3.2.1 Stimulated emission and stimulated absorption 3.2.2 Fermi’s golden rule |
| 第 9 週 | 3.3 Einstein three optical processes with atoms 3.4 Interaction of atoms with radiation: semi-classical treatment 3.5 Dipole approximation and oscillator strength |
| 第 10 週 | 3.5.1 Selection rule 3.6 Evaluation of transition matrix element in semiconductor |
| 第 11 週 | 4 Interband absorption in semiconductor |
| 第 12 週 | Midterm |
| 第 13 週 | 5 Luminescence |
| 第 14 週 | 6. Quantum confined structures |
| 第 15 週 | 7. Concept of Excitons |
| 第 16 週 | 8. Concept of Phonons |
| 第 17 週 | 9. Free electrons |
| 第 18 週 | Final Report |
1. A.M. Fox, Optical Properties of Solids, 2nd Ed., 2010, Oxford University Press 2. Semiconductor physics and devices, Basic principles, 4th ed. Donald A. Neamen, McGraw-Hill, (2011)
- 地點
- EO316A
- 時間
- Thur. PM1:30~3:00 By appointment
- 聯絡方式
- Ext: 31234 Email: timtclu@mail.nctu.edu.tw