Physics, 2nd level; Photonics (course group defined by Faculty of Physics)
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2023Z - Winter semester 2023/24 2023L - Summer semester 2023/24 2024Z - Winter semester 2024/25 (there could be semester, trimester or one-year classes) |
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2023Z | 2023L | 2024Z | |||||||
1103-4Fot22 | n/a | n/a |
Classes
Summer semester 2023/24
Groups
Brief description
The Laboratory consists of two advanced experimental or numerical exercises in photonics selected from the proposed list of exercises or individually proposed. |
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1103-4Fot24 | n/a | n/a |
Classes
Summer semester 2023/24
Groups
Brief description
A course on computational methods for microoptics and photonics. |
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1100-3INZ14 | n/a |
Classes
Winter semester 2023/24
Groups
Brief description
The lecture on photonics with numerical exercises destined primarily for the students of Nanostructures Engineering. |
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1103-5sFot |
Classes
Winter semester 2023/24
Groups
Brief description
No brief description found, go to course home page to get more information.
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1103-4Fot25 | n/a | n/a |
Classes
Summer semester 2023/24
Groups
Brief description
The student seminar is focused on modern research activities in photonics and in related disciplines. During the course, students prepare and give two seminars, including one in English. |
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1100-3IN`Pla | n/a | n/a |
Classes
Summer semester 2023/24
Groups
Brief description
The lecture deals with fundamental problems of plasmonics. After a short recollection of basic electrodynamics we focus on properties of surface plasmon-polariton (SPP) waves and methods to generate SPPs. Efficient photon-plasmon coupling is possible when wave vectors of light and SPPs are matched. It can be achieved with the use of corrugated metal surfaces. The next subjects are more practical. These are: plasmonic lenses, imaging of SPP propagation, scanning near-field optical microscope (SNOM) and its resolution, localized SPPs, plasmonic waveguides, extraordinary light transmission through single and multiple subwavelength apertures in metal screens. Outlook: plasmonics and nanooptics. Nanooptical devices. Plasmonic light traps in photovoltaics. |
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1101-5FD20 |
Classes
Winter semester 2023/24
Groups
Brief description
Specialisation laboratory II for the second year of II cycle studies. |
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1100-5PS10 | n/a |
Classes
Winter semester 2023/24
Groups
Brief description
No brief description found, go to course home page to get more information.
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