On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response

Taking into account the foundations of the generalized two-level scheme, an analytical solution to the problem of the evolution of superradiance in a quasi-two-dimensional supercrystal formed by quantum dots is obtained under homogeneous lasing field assumption in the resonant medium of the quasicry...

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Main Authors: E.V. Timoshchenko, V.A. Yurevich
Format: Article
Language:English
Published: Kazan Federal University 2021-03-01
Series:Учёные записки Казанского университета. Серия Физико-математические науки
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Online Access:https://kpfu.ru/uz-eng-phm-2021-1-2.html
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author E.V. Timoshchenko
V.A. Yurevich
author_facet E.V. Timoshchenko
V.A. Yurevich
author_sort E.V. Timoshchenko
collection DOAJ
description Taking into account the foundations of the generalized two-level scheme, an analytical solution to the problem of the evolution of superradiance in a quasi-two-dimensional supercrystal formed by quantum dots is obtained under homogeneous lasing field assumption in the resonant medium of the quasicrystal. The calculation was performed for the physical parameters of a semiconductor structure with quantum-well effects in the presence of resonant nonlinearity and intraband relaxation. We use the generalized two-level scheme, which allows us to take into account the self-modulating spectral broadening of the light field due to the absorption of radiation in quasi-resonant transitions in the quantum mechanical material equations, which are solved together with the field coupling equations. A relation is formulated that is analogous to the law of conservation of the polar angle of the Bloch vector for the more general case of interaction under consideration, in which, along with the phase nonlinearity of the response, the spread rate of active dipoles within the spectral line width is taken into account (i.e., the finiteness of the phase relaxation time of elementary emitters). The use of the Bloch vector formalism in this case makes it possible to obtain an analytical solution of the original modification of the nonlinear system of equations for the semiconductor supercrystals response variables and to calculate the shape of the superradiance pulses. The calculations predict the pronounced asymmetry of the pulses emitted by the semiconductor supercrystals. The calculated estimates of the time dynamics of the superradiance process, taking into account the nonlinearities typical for the resonant response, can be used in the development of methods for obtaining and profiling optical pulses in the sub-picosecond range of durations in modern compact nanophotonics devices.
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spelling doaj.art-611e2175d9d6474d9dfef10e0748e4122023-01-03T02:03:26ZengKazan Federal UniversityУчёные записки Казанского университета. Серия Физико-математические науки2541-77462500-21982021-03-011631213010.26907/2541-7746.2021.1.21-30On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance responseE.V. Timoshchenko0V.A. Yurevich1Mogilev State A. Kuleshov University, Mogilev, 212022 Republic of BelarusBelarusian State University of Food and Chemical Technologies, Mogilev, 212027 Republic of BelarusTaking into account the foundations of the generalized two-level scheme, an analytical solution to the problem of the evolution of superradiance in a quasi-two-dimensional supercrystal formed by quantum dots is obtained under homogeneous lasing field assumption in the resonant medium of the quasicrystal. The calculation was performed for the physical parameters of a semiconductor structure with quantum-well effects in the presence of resonant nonlinearity and intraband relaxation. We use the generalized two-level scheme, which allows us to take into account the self-modulating spectral broadening of the light field due to the absorption of radiation in quasi-resonant transitions in the quantum mechanical material equations, which are solved together with the field coupling equations. A relation is formulated that is analogous to the law of conservation of the polar angle of the Bloch vector for the more general case of interaction under consideration, in which, along with the phase nonlinearity of the response, the spread rate of active dipoles within the spectral line width is taken into account (i.e., the finiteness of the phase relaxation time of elementary emitters). The use of the Bloch vector formalism in this case makes it possible to obtain an analytical solution of the original modification of the nonlinear system of equations for the semiconductor supercrystals response variables and to calculate the shape of the superradiance pulses. The calculations predict the pronounced asymmetry of the pulses emitted by the semiconductor supercrystals. The calculated estimates of the time dynamics of the superradiance process, taking into account the nonlinearities typical for the resonant response, can be used in the development of methods for obtaining and profiling optical pulses in the sub-picosecond range of durations in modern compact nanophotonics devices.https://kpfu.ru/uz-eng-phm-2021-1-2.htmlnonlinear dynamicsquantum dots supercrystalsresonance material responsedipole-dipole interactioncollective effects of radiationbloch vector formalism
spellingShingle E.V. Timoshchenko
V.A. Yurevich
On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
Учёные записки Казанского университета. Серия Физико-математические науки
nonlinear dynamics
quantum dots supercrystals
resonance material response
dipole-dipole interaction
collective effects of radiation
bloch vector formalism
title On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
title_full On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
title_fullStr On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
title_full_unstemmed On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
title_short On solving the problem of quasi-two-dimensional supercrystal nonlinear resonance response
title_sort on solving the problem of quasi two dimensional supercrystal nonlinear resonance response
topic nonlinear dynamics
quantum dots supercrystals
resonance material response
dipole-dipole interaction
collective effects of radiation
bloch vector formalism
url https://kpfu.ru/uz-eng-phm-2021-1-2.html
work_keys_str_mv AT evtimoshchenko onsolvingtheproblemofquasitwodimensionalsupercrystalnonlinearresonanceresponse
AT vayurevich onsolvingtheproblemofquasitwodimensionalsupercrystalnonlinearresonanceresponse