量子光學導論
Intro.to Quantum Optics
| 節 | 週三 |
|---|---|
5 13:20–14:10 | 量子光學導論 EO105(光復) 3 節連堂 |
6 14:20–15:10 | |
7 15:30–16:20 |
* 根據陽明交大上課時間表所列
量子物理的發展已在許多領域展現巨大潛力,近年來這股發展正全面地改變許多現有的科技,並且進而影響甚至預期主導產業的革命,世界上無論是大公司或是新創都積極參與其中。在這堂課中,我們介紹量子光學的理論基礎,讓學生可以瞭解與參與這方面的研究與最新的發展如 quantum communication, quantum sensing and imaging, photonic qubits, quantum computation, and so on. 1. Introduce the quantum theory of lights and light-matter interaction. 2. Introduce math and physics needed to begin research in quantum optics 3. Discuss current researches and technologies using quantum optics Objectives: a. To describe the quantum properties of light and to identify differences between classical and quantum light b. To know and be able to calculate quantities that measure the quantum extent c. To know the advantages of quantum optics and the potential applications d. To explore recent researches in quantum optics
Linear Algebra, Introduction to Quantum Physics 近代物理、量子力學、或任何基礎量子物理課程
無備註
Lecture notes: https://jhihsheng.github.io/courses/qo/
Homework: 45% Quiz: 20% Report and Presentation: 35%
Quantum Mechanics
1. Postulations of quantum mechanics 2. Quantization, superposition, Hilbert Space, Measurements, and entanglement 3. State representaion
- 講授:
- 6
Field Quantization
1. Quantization of EM fields 2. Photon states: number states, coherent states, and thermal states
- 講授:
- 10
Quantum Light-Matter Interaction
1. Rabi model 2. Jaynes–Cummings model 3. Spontaneous and stimulated emissions, Rabi oscillation, superradiance, ...
- 講授:
- 10
Nonclassical Light
1. Classical and quantum coherence 2. Coherence functions 3. Squeezed states 4. Bunching and Antibunching
- 講授:
- 10
Applications of Quantum Optics
1. Entanglements and qubits 2. Quantum information and gate operations 3. Quantum communications, quantum key distributions 4. Quantum detection, quantum lidar, quantum imaging 5. Quantum computation and simulations
- 講授:
- 10
| 週次 | 主題 |
|---|---|
| 第 1 週 | Outline of Quantum Optics 2026-02-25(三) |
| 第 2 週 | Quantum Mechanics 2026-03-04(三) |
| 第 3 週 | Quantum Mechanics 2026-03-11(三) |
| 第 4 週 | Field Quantization 2026-03-18(三) |
| 第 5 週 | Field Quantization and Photon States 2026-03-25(三) |
| 第 6 週 | Field Quantization and Photon States 2026-04-01(三) |
| 第 7 週 | Light-Matter Interactions 2026-04-08(三) |
| 第 8 週 | Light-Matter Interactions/Rabi Model 2026-04-15(三) |
| 第 9 週 | Light-Matter Interactions/JC Model 2026-04-22(三) |
| 第 10 週 | Classical and Quantum Coherence 2026-04-29(三) |
| 第 11 週 | Quantum Coherence Functions 2026-05-06(三) |
| 第 12 週 | Nonclassical Light 2026-05-13(三) |
| 第 13 週 | Nonclassical Light/Entanglement 2026-05-20(三) |
| 第 14 週 | Entanglement/Qubit/Quantum Information 2026-05-27(三) |
| 第 15 週 | Reports and Final Presentations 2026-06-03(三) |
| 第 16 週 | Reports and Final Presentations 2026-06-10(三) |
We will follow mainly my lecture notes at https://jhihsheng.github.io/courses/qo/ Main reference: 1. Christopher Gerry and Peter Knight, “Introductory Quantum Optics”, Cambridge University Press, 2005 Complementary References: 1. Gilbert Grynberg, Alain Aspect, and Claude Fabre, “Introduction to Quantum Optics”, Cambridge University Press, 2010 2. Miguel Orszag, “Quantum Optics”, Springer 2016 Advanced Reference: 1. J. C. Garrison and R.Y. Chiao, “Quantum Optics”, Oxford 2008
- 地點
- TKP Building Rm. 413 田家炳光電中心 413
- 時間
- Tuesday 10:00 am to 12:00 Make an appointment by email in advance.
- 聯絡方式
- jwu@nycu.edu.tw
