PhD program
Physical electronics and photonics

Physical electronics and photonics

QUALIFICATION

  • Scientific and pedagogical direction - Doctor of Philosophy (PhD)

MODEL OF GRADUATING STUDENT

ON1. Analyze the current level of development of nanophotonics, photovoltaics, quantum optics, quantum computing and optoelectronics to solve research problems;
ON2. Apply a systematic approach to research in the field of attosecond and femtosecond physics in the interaction of light with the crystal lattice of matter;
ON3. Carry out a critical analysis and assessment of the current level of development of scientific knowledge in the field of physical electronics and photonics in order to set long-term and short-term goals and objectives of research and innovation activities, including in a foreign language;
ON4. Systematize the main research methods used in the field of physical electronics and photonics to solve scientific and scientific-technical problems;
ON5. To simulate physical processes when solving scientific problems in the field of optics of low-dimensional systems using mathematical formalization methods, and create new nano-sized structures with the necessary physical and chemical properties;
ON6. Compare and evaluate the results of research from other research groups, evaluate the results of your own research in the field of physical electronics and photonics;
ON7. Formulate scientific problems and tasks related to research in the field of ultrafast, low-dimensional optics and quantum computing, proposing solutions to current problems based on the current level of development of science and technology;
ON8. Carry out scientific and pedagogical activities, train personnel in the field of physical electronics and photonics and prepare scientific research results for publication in foreign and domestic journals;
ON9. To evaluate the scientific problems of physical electronics and photonics, the prospects for the development of this field and their importance for the country's economy, observing the ethical and professional standards adopted in the scientific community;
ON10. Have teamwork skills, independence and initiative, be responsible for the results of research or professional activities, manage research projects and professional groups in solving scientific research problems;

Program passport

Speciality Name
Physical electronics and photonics
Speciality Code
8D05311
Faculty
of Physics and Technology

disciplines

Academic writing
  • Number of credits - 2
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: the application of fundamental knowledge in writing scientific publications and projects on the proposed solutions to actual problems of a certain scientific direction. The following topics will be considered: aspects of creating and editing scientific texts; official, neutral and unofficial communication registers; modern information and bibliographic culture; methods of compiling and processing scientific documentation.

Modern physical electronics
  • Number of credits - 5
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to develop doctoral students’ knowledge about modern advances in the field of physical electronics. Will be considered: new semiconductor materials, nanomaterials, high-speed semiconductor devices, physical processes, a modern understanding of the physical processes occurring in semiconductor devices at each stage of their manufacture and operation, physical limitations of semiconductor electronics, problems of physical electronics and modern approaches to their solution.

Physics of nonlinear phenomena
  • Number of credits - 5
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to describe the main effects and phenomena in nonlinear physics. Will be considered: nonlinear phenomena in dissipative systems, continuity equation, statistical mechanics of the sine-Gordon field, chaos, fluid turbulence, nonlinear problems of stellar dynamics, solitons in general relativity, phase portrait of a nonlinear dynamic system, self-oscillations, three-wave processes, four-wave processes, self-consistent field approximation, nonlinear electrodynamics.

Scientific Research methods
  • Number of credits - 3
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: mastering the stages and methods of research in accordance with the tasks set for the scientific direction of the educational program. The following will be considered: modern models and methods necessary for in-depth analysis of scientific calculations and optimization of existing processes using advanced technologies; main methods of literary and comparative analysis for the preparation and forecasting of scientific plans and research results

Data for 2021-2024 years

disciplines

Nonlinear and ultrafast optics
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to introduce doctoral students to the scientific foundations of nonlinear and ultrafast optics of ultrashort laser pulses. Will be considered: nonlinear free electron optics, nonlinear dynamic free electron diffraction, ultrafast diffraction x-ray optics, ultra-fast structural changes, femtosecond laser pulses, ultra-fast lattice dynamics, dynamic theory of diffraction, phonon type distortions, nonlinear response functions for X-ray laser pulses.

Physics of nanomaterials and nanodevices
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to form among doctoral students an idea of the latest scientific achievements in the field of physics of nanomaterials and devices based on them. Will be considered: contemporary problems in the development of nanostructures, the role of mechanical, thermal, optical, electrical and magnetic properties in the creation of modern nanomaterials, new methods for growing thin semiconductor films, growing semiconductor nanomaterials with the necessary physical and chemical properties.

Quantum computing systems
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to develop doctoral students’ knowledge of the physical foundations of quantum computing systems. Will be considered: Josephson quantum junction, gate in superconducting charge qubits, coupling and dephasing in a Josephson qubit, Josephson bifurcation amplifier, qubit dynamics, quantum computing with streaming qubits, statistics of transmission eigenvalues for a quantum dot contact, quantum qubit in a double quantum dot.

Semiconductor photonics and optoelectronics
  • Type of control - [RK1+MT+RK2+Exam] (100)
  • Description - The purpose of the discipline: to develop doctoral students’ knowledge about modern scientific achievements and the results of new scientific work in the field of photonics and optoelectronics. Will be considered: modern scientific and technical achievements in the field of semiconductor and optoelectronic devices, new achievements in the field of laser creation, classification and dynamic properties of modern lasers, quantum cascade lasers, vertical cavity surface irradiation lasers, lasers with distributed feedback, quantum dot lasers, modern photodetectors, optical frequency conversion, light emitting diodes and laser diodes, linear optical media, nonlinear optical media.

Data for 2021-2024 years

INTERNSHIPS

Pedagogical
  • Type of control - Защита практики
  • Description - Formation of practical, educational-methodical skills of conducting lectures, seminars, creatively apply scientific, theoretical knowledge, practical skills in teaching activities, conduct training sessions in the disciplines of the specialty; own modern professional techniques, methods of training, use in practice the latest theoretical, methodological advances, make educational, methodological documentation.

Research
  • Type of control - Защита практики
  • Description - The purpose of the practice: gaining experience in the study of an actual scientific problem, expand the professional knowledge gained in the learning process, and developing practical skills for conducting independent scientific work. The practice is aimed at developing the skills of research, analysis and application of economic knowledge.

Data for 2021-2024 years