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Aplikovaná mikroelektronika a fotonika

Type of study Follow-up Master
Language of instruction English
Code 653-3168/02
Abbreviation AMF
Course title Aplikovaná mikroelektronika a fotonika
Credits 5
Coordinating department Department of Materials Engineering and Recycling
Course coordinator Ing. Lukáš Halagačka, Ph.D.

Subject syllabus

1. Introduction to microelectronics, thin film semiconductor devices.
2. LED and OLED technology
3. Technology platforms based on IMOS and SOI
4. Plasmonic Structures in Integrated Photonic Structures
5. Stand-alone and integrated optical isolators
6. Practical task: measurement of the electrical properties of thin films using the Van der Pauw method
7. Practical task: Preparation of an ultrafast photoconductive switch by multilayer optical lithography
8. Practical task: preparation of a heterogeneous PN-transition structure in thin film magnetron sputtering method and its electrical characterization.

Literature

SNIDER, Mason. Microelectronics: An Integrated Approach. Scientific e-Resources, 2018.
SALEH, Bahaa EA; TEICH, Malvin Carl. Fundamentals of photonics. john Wiley & sons, 2019.
REIDER, Georg A. Photonics. New York, NY, USA: Springer, 2016.
BERGÉS Silvestre , Santiago. "Optoelektronika, fotonika a senzory." (2016).

Advised literature

RAZAVI, Behzad. Fundamentals of microelectronics. John Wiley & Sons, 2021.
MARTÍN-PALMA, Raúl José; MARTÍNEZ-DUART, José. Nanotechnology for microelectronics and photonics. Elsevier, 2017.
HOEFFLINGER, Bernd (ed.). Chips 2020: a guide to the future of nanoelectronics. Berlin: Springer, 2012.