Course detail
Quantum and Laser Electronics
FEKT-MKVEAcad. year: 2018/2019
Students will learn the basic postulates of quantum mechanics, Schrödinger equation, the wave function, the uncertainty principle, statistical thermodynamics, interactions of radiation and matter, the basic properties of laser radiation, principles and characteristics of lasers, laser detection, and the effects of laser radiation on the human body and the use of lasers in medicine, industry and telecommunications. In the individual project, students will solve specific laser application.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Learning outcomes of the course unit
- To describe basic principles of quantum theory and statistical thermodynamics
- To describe the interaction of radiation and matter
- To explain the principle of laser function
- To compare particular laser types and to discuss their advantages and disadvantages
- To describe the effects of laser radiation on the human body
- To name and to describe practical applications of lasers
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Assesment methods and criteria linked to learning outcomes
Course curriculum
2. History of quantum and laser electronics
3. Fundamentals of quantum and laser electronics
4. Fundamental particles and their characteristics
5. Schrödinger equation
6. Statistical thermodynamics
7. Radiation - matter interaction
8. Optical resonators
9. Laser and LED theory
10. Gas lasers
11. Solid state, liquid and semiconductor lasers
12. Application of lasers (optical links, optical sensors)
13. Future of quantum and laser electronics
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
WILFERT, O. Kvantová a laserová elektronika. Učební text. UREL VUT v Brně, Brno 2012. (CS)
WILFERT,O. Optoelektronika. Elektronický učební text. UREL VUT v Brně, Brno 2002, REL 023. (CS)
WILFERT,O. Optoelektronika. Skripta. UREL VUT v Brně, Brno 2002, ISBN 80-214-2264-5. (CS)
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
History of quantum and laser electronics
Fundamentals of quantum and laser electronics
Fundamental pareticles and their characteristics
Schrödinger equation
Thermal physics
Radiation matter interaction
Optical resonators
Laser theory
Gas lasers
Solid state, liquid and semiconductor lasers
Application of lasers
Future of quantum and laser electronics
Laboratory exercise
Teacher / Lecturer
Syllabus
Measurement of wavelength of the laser radiation
Measurement of beam width and radius of curvature of wave surface
Measurement of laser diode and LED light characterisric
Safety at work by operation with laser