3D imaging and lensless imaging: light field camera/display, holography, and phase retrieval @SanderKonijnenberg
3D imaging and lensless imaging: light field camera/display, holography, and phase retrieval  @SanderKonijnenberg
Uploaded August 2020 | Updated September 2026, 3 hours ago
ERRATA: at 48:43, the expression in the bottom right purple rectangle should be exp(-2 pi i K.X) instead of exp(-2 pi i K.x). (Thanks to YG123 for pointing this out)

Lecture notes: drive.google.com/drive/folders/1C19nI8QTyyVAysR-pDcoJ27p6VQyVcPM?usp=sharing

My PhD thesis on phase retrieval: doi.org/10.4233/uuid:c8adfe08-43cd-4b8a-9436-54a9a56b4e14

0:00 Introduction
4:37 Light field camera
7:11 Holography
8:01 Inline holography
9:46 Off-axis holography
13:37 Reflection holography
16:55 Rainbow hologram
20:04 Phase imaging
21:38 Zernike phase contrast microscopy
25:01 Shack-Hartmann wavefront sensor
27:07 Digital holography microscopy
30:20 Coherent Diffractive Imaging (CDI)
32:25 CDI: inline holography
33:27 Fourier Transform Holography (off-axis holography)
35:48 Iterative CDI algorithms
47:20 Ptychography
52:26 Fourier ptychography
3D imaging and lensless imaging: light field camera/display, holography, and phase retrievalOptical aberrations: ray aberrations, wavefront error, Seidel, Abbe sine condition, Zernike01. Geometric Optics (ray transfer matrix, linear/angular magnification, chief/marginal rays)Numerically simulating the propagation of coherent optical fields (Fourier optics)
Sander Konijnenberg |

3D imaging and lensless imaging: light field camera/display, holography, and phase retrieval

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