Lecture7 Diffraction (1/2), 1. Introduction, 2. Huygen's Principle, 3. Frannhofer diffraction

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Lecture1 Waves
1. Wave motions
2. Wave equations
3. The wave equation 3-D
4. Complex representation
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Lecture2 EM Waves & Optics (1/2)
1. Maxwell's equation
2. Characteristics of EM Waves
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Lecture2 EM Waves & Optics (2/2)
4. Boundary conditions
5. The laws of reflection & refraction
6. Fresnel equations
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Lecture3 Dispersion, Absorption, Scattering
1. Dispersion
2. Classical Electron Gas Model
3. Optical Property of Metals
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Lecture4 Interference
1. Introduction
2. Young's experiment
3. Michelson interferometer: Amplitude splitting
4. Multiple-beam interferometer
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Lecture5 Thin-Film interference
1. Introduction
2. Multi-layer films
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Lecture6 Coherence
1. Introduction
2. Spatial Coherence
3. Temporal Coherence
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Lecture7 Diffraction (1/2)
1. Introduction
2. Huygen's Principle
3. Frannhofer diffraction
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Lecture7 Diffraction (2/2)
4. Fresnel diffraction
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Lecture8 Optical Imaging
1. Abbe's theory of Image formation
2. Phase-contrast microscopy
3. Point-spread Function
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Lecture9 Diffraction and Imaging
1. Resdution limit of optical instruments
2. Spatial fictering
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Lecture10 Polarization (1/3)
1. Polarization states
2. Generating Polarized Light
3. Adjusting the polarizing states
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Lecture10 Polarization (2/3)
4. Jones calculus
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Lecture10 Polarization (3/3)
5. Real-time phase retarders
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