Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
The change of kinetic coefficients in Bi0.88Sb0.12 alloy under influence of anisotropic deformation at temperature 80 K was studied. The diagrams of the magneto resistance rotation were considered. The anisotropic deformation was applied along the trigonal axis C3 of the cry...
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D.Ghitu Institute of Electronic Engineering and Nanotechnologies
2005
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oai:doaj.org-article:05edc96fd29541fe82e1000cca961f0a2021-11-21T12:12:10ZKinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation 2537-63651810-648Xhttps://doaj.org/article/05edc96fd29541fe82e1000cca961f0a2005-11-01T00:00:00Zhttps://mjps.nanotech.md/archive/2005/article/3255https://doaj.org/toc/1810-648Xhttps://doaj.org/toc/2537-6365The change of kinetic coefficients in Bi0.88Sb0.12 alloy under influence of anisotropic deformation at temperature 80 K was studied. The diagrams of the magneto resistance rotation were considered. The anisotropic deformation was applied along the trigonal axis C3 of the crystal. The obtained results were interpreted in framework of the Lax ellipsoidal-non parabolic (ENP) model. The modifications of the energy band gap width (Eg) and charge carriers effective masses were examined. It was shown that the changes of properties of electrons and holes under pressure may differ. The possible causes of this difference were discussed. Cherner, IacovD.Ghitu Institute of Electronic Engineering and NanotechnologiesarticlePhysicsQC1-999ElectronicsTK7800-8360ENMoldavian Journal of the Physical Sciences, Vol 4, Iss 3, Pp 318-325 (2005) |
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Physics QC1-999 Electronics TK7800-8360 |
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Physics QC1-999 Electronics TK7800-8360 Cherner, Iacov Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation |
description |
The change of kinetic coefficients in Bi0.88Sb0.12 alloy under influence of anisotropic
deformation at temperature 80 K was studied. The diagrams of the magneto resistance
rotation were considered. The anisotropic deformation was applied along the trigonal axis C3
of the crystal.
The obtained results were interpreted in framework of the Lax ellipsoidal-non parabolic
(ENP) model. The modifications of the energy band gap width (Eg) and charge carriers
effective masses were examined.
It was shown that the changes of properties of electrons and holes under pressure may
differ. The possible causes of this difference were discussed. |
format |
article |
author |
Cherner, Iacov |
author_facet |
Cherner, Iacov |
author_sort |
Cherner, Iacov |
title |
Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
|
title_short |
Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
|
title_full |
Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
|
title_fullStr |
Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
|
title_full_unstemmed |
Kinetic coefficients in Bi0.88Sb0.12 alloy: Influence of anisotropic deformation
|
title_sort |
kinetic coefficients in bi0.88sb0.12 alloy: influence of anisotropic deformation |
publisher |
D.Ghitu Institute of Electronic Engineering and Nanotechnologies |
publishDate |
2005 |
url |
https://doaj.org/article/05edc96fd29541fe82e1000cca961f0a |
work_keys_str_mv |
AT cherneriacov kineticcoefficientsinbi088sb012alloyinfluenceofanisotropicdeformation |
_version_ |
1718419104717602816 |