Optical Engineering
Lecture Notes
Lecture notes have been posted whenever possible. Not all lectures are available for distribution.
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LEC # |
TOPICS |
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1 |
Introduction: Statistical Optics, Inverse Problems (PDF - 1.3 MB) |
|
2 |
Fourier Optics Overview (PDF - 1.4 MB) |
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3 |
Random Variables: Basic Definitions, Moments |
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4 |
Random Variables: Transformations, Gaussians |
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5 |
Examples: Probability Theory & Statistics |
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6 |
Random Processes: Definitions, Gaussian, Poisson |
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7 |
Examples: Gaussian Processes |
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8 |
Random Processes: Analytic Representation |
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9 |
Examples: Complex Gaussian Processes |
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10 |
1st-Order Light Statistics |
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11 |
Examples: Thermal & Laser Light |
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12 |
2nd-Order Light Statistics: Coherence |
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13 |
Example: Integrated Intensity |
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14 |
The van Cittert-Zernicke Theorem |
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15 |
Example: Diffraction From An Aperture |
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16 |
The Intensity Interferometer |
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17 |
Examples: Stellar Interferometer, Radio Astronomy, |
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18 |
Effects of Partial Coherence on Imaging |
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19 |
Information Theory: Entropy, Mutual Information (PDF) |
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20 |
Example: Gaussian Channels |
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21 |
Convolutions, Sampling, Fourier Transforms |
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22 |
Imaging Channels |
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23 |
Inverse Problem Case Study: Tomography |
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24 |
Filtered Backprojection |
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25 |
Super-Resolution and Image Restoration |
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26 |
Information-Theoretic Performance of Inversion Methods |
Assignments
Homework 1: Fourier Optics Overview (PDF)
Homework 2: Introductory Probability (PDF)
Homework 3: More Probability (PDF)
Homework 4: Random Processes (PDF)
