RELAXATION STRUCTURE OF LIGHT REFLECTION BY A LOW-DIMENSIONAL ARRAY OF RESONANT QUANTUM EMITTERS

 Timoschenko E. V., Yurevich V. A., Khomcnenko A. V., Yurevich Yu. V.


УДК 535.24 + 621.376


АВТОРЫ

  E. V. Timoschenko

Ph. D. (Optics), Associate Professor, Head of the Department of Physics and Computer Technology
Mogilev State A. Kuleshov University

  V. A. Yurevich

Doctor of Physical and Mathematical Sciences, Professor, Professor of the Department of Technosphere Safety and General Physics
Belarusian State University of Food and Chemical Technologies

  A. V. Khomcnenko

Doctor of Physical and Mathematical Sciences, Associate Professor, Head of the Department of Physical Testing Methods
Belarusian-Russian University

  Yu. V. Yurevich

Ph. D. (Optics), Associate professor, Associate Professor of the Department of Automation of Technological Processes and Production
Belarusian State University of Food and Chemical Technologies

АННОТАЦИЯ

A modification of the Maxwell-Bloch system of equations is proposed for studying oscillationsin the intensity of coherent radiation reflected from a low-dimensional array formed by astructure of relatively high-density resonant dipole centers. Modeling and qualitative analysis ofthe proposed system of kinetic equations showed that variations in the phase relationship of thelight field and the resonant polarization of the array cause internal instability of the physical energyexchange system, manifested in a pronounced oscillatory structure of the reflected radiation.The modeling utilized the material properties of semiconductor quantum dots.


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