Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands

Theory of interband optical absorption in rectangular quantum well with infinite barriers based on materials with strong nonparabolicity and anisotropy of energy spectra is developed. The numerical calculations for three-dimensional Dirac cadmium arsenide are done. Special attention is paid to the i...

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Main Authors: V.V.В Ivchenko, V.S.В Shcherbiuk
Format: Article
Language:English
Published: Sumy State University 2017-10-01
Series:Журнал нано- та електронної фізики
Subjects:
Online Access:http://jnep.sumdu.edu.ua:8080/download/numbers/2017/5/articles/Proof_JNEP_05012.pdf
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author V.V.В Ivchenko
V.S.В Shcherbiuk
author_facet V.V.В Ivchenko
V.S.В Shcherbiuk
author_sort V.V.В Ivchenko
collection DOAJ
description Theory of interband optical absorption in rectangular quantum well with infinite barriers based on materials with strong nonparabolicity and anisotropy of energy spectra is developed. The numerical calculations for three-dimensional Dirac cadmium arsenide are done. Special attention is paid to the investigation of the effects of energy gap oscillation and “blue shift delay” in this material.
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institution Kabale University
issn 2077-6772
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publishDate 2017-10-01
publisher Sumy State University
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series Журнал нано- та електронної фізики
spelling doaj-art-cfffa34112754bbe8886ac10494067c12025-08-20T03:24:55ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722017-10-019505012-105012-810.21272/jnep.9(5).05012Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic BandsV.V.В Ivchenko0V.S.В Shcherbiuk1Kherson State Maritime Academy, 20, Ushakova Prosp., 73000 Kherson, UkraineKherson State University, 27, Universitetskaya Str., 73000 Kherson, UkraineTheory of interband optical absorption in rectangular quantum well with infinite barriers based on materials with strong nonparabolicity and anisotropy of energy spectra is developed. The numerical calculations for three-dimensional Dirac cadmium arsenide are done. Special attention is paid to the investigation of the effects of energy gap oscillation and “blue shift delay” in this material.http://jnep.sumdu.edu.ua:8080/download/numbers/2017/5/articles/Proof_JNEP_05012.pdfInterband optical absorptionQuantum wellCadmium arsenideEnergy gap oscillation“Blue shift delayвЂ
spellingShingle V.V.В Ivchenko
V.S.В Shcherbiuk
Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
Журнал нано- та електронної фізики
Interband optical absorption
Quantum well
Cadmium arsenide
Energy gap oscillation
“Blue shift delayвЂ
title Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
title_full Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
title_fullStr Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
title_full_unstemmed Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
title_short Theory of Interband Optical Absorption in Quantum Wells Based on Bulk Materials with Anisotropic Nonparabolic Bands
title_sort theory of interband optical absorption in quantum wells based on bulk materials with anisotropic nonparabolic bands
topic Interband optical absorption
Quantum well
Cadmium arsenide
Energy gap oscillation
“Blue shift delayвЂ
url http://jnep.sumdu.edu.ua:8080/download/numbers/2017/5/articles/Proof_JNEP_05012.pdf
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