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物理學
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量子科技實驗 2: 理論 |Offered in English

2026-03-05-2040-12-31

國立清華大學 物理學系 黃晟維

關鍵字: 實驗課程 lab course 量子科技 quantum science and technology 量子光學 quantum optics 量子位元 NV-center qubit



核心能力
Core Competencies

  物理實驗能力  20%
Capability of physics experiment 
  研究導向物理知識 20%
Knowledge about physics research
  高階物理知識 20%
High level knowledge of physics 
  溝通表達能力 20%
Capability of communication and expression 
  團隊合作能力 10%
Capability of collaboration 
  自主學習能力  10%
Independent learning capability 




課程描述
Course description

Thisis an introductory lab-based QIST course. There are two main themes: (1)quantum optics, and (2) quantum spin. In quantum optics lab, we explore varioustopics on quantum foundation through single-photon experiments. In quantum spinlab, we implement laser and microwave sequences to achieve coherent controls ofroom-temperature nitrogen-vacancy qubits. There are no prerequisites forenrollment, but a general knowledge about quantum mechanics, quantum optics, orquantum information will be helpful. Essential theoretical background of eachexperiment will be covered in the lectures.





課程計劃
Course plan

 1st week: introduction and preparation (2/26)
 2nd-15th week: 14 regular lab sessions
 16th week: bonus lab session (6/11)
 Regular lab sessions: 
3/5, 3/12, 3/19, 3/26, 4/2, 4/9, 4/16, 4/23, 4/30, 5/7, 5/14, 5/21, 5/28, 6/4 





課程內容
Course content

 quantum optics lab regular session
1. Lab1aHBT measurement of temporal correlation (manual 9.1, 9.2)
2. Lab2aMeasurement of spatial correlation (manual 10.4, 10.5)
3. Lab3aHong-Ou-Mandel experiment (worksheet)
4. Lab4aGRA experiments with and without gating (manual 9.3, 9.4, 9.5)
5. Lab5aMalus’ law and the three-polarizer-paradox (manual 9.6, 10.3)
6. Lab6aSingle-photon interference and coherence time measurement (manual 9.7, 10.1)
7. Lab7aDelayed-choice quantum eraser (manual 9.8)

 quantum spin lab regular session
 8. Lab1bPhotoluminescence from NV-centers
 9. Lab2b

Opticallydetected magnetic resonance

 10. Lab3b

Rabioscillation

 11. Lab4b

Ramseyinterferometry

 12. Lab5b

Dynamicaldecoupling

 13. Lab6b

Discretequantum state tomography

 14. Lab7b

Hyperfinespectroscopy






教學方法
Teaching method 

 1.Lectures on introductory QIST theories will be given in board work before each regular lab session.
 2.As interpretation of experimental results is critical for effective learning of quantum science, data analysis, academic
writing, and scientific communication will be emphasized in this course.
 3.Peer instruction will be employed in the form of lecture quiz




參考文獻
References 

 1. David J. Griffiths, "Introduction to Quantum Mechanics" 2nd edition (Pearson Prentice Hall, 2004) 
 2. Richard Robinett, "Quantum Mechanics: Classical Results, Modern Systems, and Visualized Examples" 2nd edition
 (Oxford University Press, 2006)
 3. Christopher C. Gerry and Peter L. Knight, "Introductory Quantum Optics" 1st edition
 (Cambridge University Press, 2004)
 4. Michael A. Nielsen and Issac L. Chuang, "Quantum Computation and Quantum Information"
 (Cambridge University Press, 2000)
 5. Peter W. Milonni and Joseph H. Eberly, "Laser Physics" (Wiley, 2010)
 6. Gibert Grynberg, Alain Aspect, and Claude Fabre, "Introduction to Quantum Optics:
 From the Semi-classical Approach to Quantized Light" (Cambridge University Press, 2010)
 7. Peter W. Milonni, "The Quantum Vacuum: An Introduction to Quantum Electrodynamics"
 (Academic Press, 1994)
 8. Dagmar Bruss and Gerd Leuchs, "Lectures on Quantum Information" (Wiley-VCH, 2006)




講義專區

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https://ocw.nthu.edu.tw/courses/358