Energy Levels in Nanowires and Nanorods with a Finite Potential Well

Author:

Gulyamov G.1ORCID,Gulyamov A. G.2ORCID,Davlatov A. B.2ORCID,Juraev Kh. N.2ORCID

Affiliation:

1. Namangan Engineering Construction Institute, 12 Islam Karimov Street, Namangan 160103, Uzbekistan

2. Physical-Technical Institute, Uzbek Academy of Sciences, Chingiz Aytmatov Street, 2 “B”, Tashkent 100084, Uzbekistan

Abstract

The energy of electrons and holes in cylindrical quantum wires with a finite potential well was calculated by two methods. An analytical expression is approximately determined that allows one to calculate the energy of electrons and holes at the first discrete level in a cylindrical quantum wire. The electron energy was calculated by two methods for cylindrical layers of different radius. In the calculations, the nonparabolicity of the electron energy spectrum is taken into account. The dependence of the effective masses of electrons and holes on the radius of a quantum wires is determined. An analysis is made of the dependence of the energy of electrons and holes on the internal and external radii, and it is determined that the energy of electrons and holes in cylindrical layers with a constant thickness weakly depends on the internal radius. The results were obtained for the InP/InAs heterostructures.

Funder

Program for Fundamental Research

Publisher

Hindawi Limited

Subject

Condensed Matter Physics

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