- How optical waveguides work, based on geometrical optics and Maxwell's equations
- Various types of waveguides: Slab, rectangular, slot, fibre, photonic crystals
- The bandwidth of optical fibres = why the internet is possible
- Sensing: Evanescent field and waveguide configurations for sensing
- Trapping: How it works, limits, and advantages
- Lab: Making slab waveguides, coupling light into them, characterization
- Simulation/demonstration: Comsol Multiphysics for computing the modes of a waveguide
This course will include simulations and lab demonstrations
| Rhythmus | Tag | Uhrzeit | Format / Ort | Zeitraum | |
|---|---|---|---|---|---|
| einmalig | Mo | 10-12 | D3-203 | 26.09.2011 | Vorbesprechung, Mo, 26.09.2011 , 10 c.t. |
| nach Vereinbarung | n.V. | D3-203 | 26.09.-07.10.2011 |
Verstecke vergangene Termine <<
| Studiengang/-angebot | Gültigkeit | Variante | Untergliederung | Status | Sem. | LP | |
|---|---|---|---|---|---|---|---|
| Biophysik / Master | (Einschreibung bis SoSe 2012) | Modul 64.1 | Wahlpflicht | 6 | benotet | ||
| Nanowissenschaften / Master | (Einschreibung bis SoSe 2012) | Modul 64.1 | Wahlpflicht | 6 | benotet | ||
| Physik / Master | (Einschreibung bis SoSe 2012) | Modul 54.14 | Wahlpflicht | 6 | benotet |