Experimental Laser Physics
Course: Radio Physics and Electronics
Structural unit: Faculty of Radiophysics, Electronics and Computer Systems
Title
Experimental Laser Physics
Code
ВК.05.2
Module type
Вибіркова дисципліна для ОП
Educational cycle
Second
Year of study when the component is delivered
2023/2024
Semester/trimester when the component is delivered
3 Semester
Number of ECTS credits allocated
3
Learning outcomes
The student must know:
Optical properties of nanomaterials, Physical foundations of photonic crystals; Characteristics of metamaterials; Physical properties of plasmonics and nanoplasmonics; Near-field optics; Modern technologies for the application of nanooptics.
The student must be able to:
Creatively use knowledge of the laws and mechanisms of physical effects in nanooptics and their application in educational,
research and teaching activities.
Form of study
Full-time form
Prerequisites and co-requisites
The student must know: optics, electrodynamics, quantum mechanics, laser physics.
The student must be able to: creatively use in educational,
research and teaching activities
modern knowledge about the laws and mechanisms of physical effects in nanooptics and their
application in information technologies, materials processing, medicine, biology, ecology.
Course content
The discipline "Experimental Laser Physics" is included in the list of disciplines of free choice of students. It ensures the professional development of the student in the field of optical technologies of the 21st century, which include technologies of recording, reproduction and transmission of information, lithography, optical technologies in medicine, biology, ecology. Studying this discipline will allow the student to freely navigate the physical foundations of optical technologies of today and make predictive assessments of their developm
Recommended or required reading and other learning resources/tools
1. Находкін М.Г., Сизов Ф.Ф. Елементи функціональної електроніки. К.: 2002.
2. Єщенко О.А. Плазмоніка. К: Фенікс. 2013. – с. 176.
3. Mitin V.V., Sementsov D.I. An Introduction to Applied Electromagnetics and Optics. CRC Press,
2017 – p. 374
4. Vatarescu A. The Physical Reality of Applied Quantum Optics: Physics versus Mathematics.
Cambridge Scholars Pub., 2021 p. – 173
5. Hohenester U. Nano and Quantum Optics: An Introduction to Basic Principles and Theory.
Springer, 2020 – p. 655
6. Vianaand M.A.G., Lakshminarayanan V. Symmetry in Optics and Vision Studies: A DataAnalytic Approach, CRC Press, 2020 – p. 209
Planned learning activities and teaching methods
Lectures. Independent work.
Assessment methods and criteria
The academic semester has one substantive module. Mandatory for admission to the exam are: writing a modular test paper with a score of at least 12 and giving a report at the seminar.
Final assessment (in the form of an exam): the form of the exam is written-oral. The condition for achieving a positive grade for the discipline is to obtain at least 60 points, the passing grade cannot be less than 24 points.
Language of instruction
Ukrainian
Lecturers
This discipline is taught by the following teachers
Sergey
Mykolayovych
Savenkov
Department of Electrophysics
Faculty of Radiophysics, Electronics and Computer Systems
Faculty of Radiophysics, Electronics and Computer Systems
Departments
The following departments are involved in teaching the above discipline
Department of Electrophysics
Faculty of Radiophysics, Electronics and Computer Systems