Transformation of a Gaussian beam due to a lens and a mirror.
30
Application of Gaussian beam equations
31
Lecture 31 - Interferometry basics
32
Lecture 32 - Interferometry basics - part 1
33
Lecture 33 - Introduction to Python
34
Lecture 34 - Python - part 2
35
Lecture 35 - Introduction to Matlab
36
Lecture 36 - Interferometry basics - part 2
37
Lecture 37 - Python - part 3
38
Lecture 38 - Matlab tutorial on interference
39
Lecture 39 - Applications of interference - part 1
40
Lecture 40 - Holography
41
Lecture 41 - Applications of interference
42
Lecture 42 - Applications of Optical Engineering
43
Lecture 43 - Diffractive Optics
44
Lecture 44 - Diffraction Grating
Description:
This course in optical engineering covers topics such as geometric optics, refraction, image formation, aberrations, Gaussian beams, and interferometry.
The course also includes laboratory components using the software OSLO, as well as programming components using Python and Matlab. The topics covered range from basic concepts to more advanced topics such as aberration correction, Gaussian beam transformation, and applications of interference in holography and diffractive optics.