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Holography (E361079)
Departments:ústav přístrojové a řídící techniky (12110)
Abbreviation:Approved:24.02.2009
Valid until: ??Range:2P+0C+1L
Semestr:10Credits:5
Completion:Z,ZKLanguage:EN
Annotation
Lectures on Holography for advanced students in optics. Lectures in the first part of semester, making holograms in the second part.
Teacher's
Ing. Bc. Šárka Němcová Ph.D.
Letní 2021/2022
Structure
1) What is a hologram, principle of 3D recording. Perception of depth. Coherence.
2) Interference, diffraction. Spontaneous and stimulated emission. Lasers: principle, types.
3) Hologram: recording and reconstruction. Paraxial and non-paraxial imaging formulae. Magnification, aberrations.
4) Types of hologams: transmission, reflection, Denisjuk, Benton. Optical set-ups for recording of each type of hologram.
5) Diffraction efficiency of a hologram. Embossed holograms.
6) Requirements for light sources, set-ups, recording materials. Types of recording materials. Photographic process.
7) Holographic interferometry: double exposure method, live fringes, time-average method. Holographic optical elements.
8) Visit to a holographic company or to Academy of Science.
9) Denisjuk hologram making
10) Benton hologram - H1 record
11) Benton hologram - H2 record
12) Holointerferogram
13) Stereoportrait - H1 record
14) Stereoportrait - H2 record
Structure of tutorial
9) Denisjuk hologram making
10) Benton hologram - H1 record
11) Benton hologram - H2 record
12) Holointerferogram
13) Stereoportrait - H1 record
14) Stereoportrait - H2 record
Literarture
Caulfield, H., J., Handbook of Optical Holography, Academic Press, N.Y., 1979
Saxby G.: Practical Holography, IOP Publishing, 2004
course website: http://control.fs.cvut.cz/en/courses/holography-e361079
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