Effect of Electric Field on Energy Spectrum and Intersubband Absorption Coefficient of Electron in Spherical Multilayered Quantum dot CdSe/ZnS/CdSe

Authors

  • V.A. Holovatsky Yuriy Fedkovych Chernivtsi National University
  • M.Y. Yakhnevych Yuriy Fedkovych Chernivtsi National University

DOI:

https://doi.org/10.15330/pcss.18.3.297-301

Keywords:

QDQW, multilayered QD, intersubband absorption, intraband transitions

Abstract

In this paper, the energy spectrum of electron and complete set of exact wave functions are obtained in the framework of effective mass approximation and rectangular potential barriers model for the CdSe/ZnS/CdSe nanostructure. Using the matrix method, the numeric calculations are performed for the electron energy spectrum as a function of electric field strength in multilayered quantum dot. It is shown that the electric field effects on the core electron in the ground state and causes its tunneling into the outer potential well. Thus, the overlap of wave functions varies essentially, influencing the dipole momentum of quantum transitions and light absorption coefficient.

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Published

2017-09-15

How to Cite

Holovatsky, V., & Yakhnevych, . M. (2017). Effect of Electric Field on Energy Spectrum and Intersubband Absorption Coefficient of Electron in Spherical Multilayered Quantum dot CdSe/ZnS/CdSe. Physics and Chemistry of Solid State, 18(3), 297–301. https://doi.org/10.15330/pcss.18.3.297-301

Issue

Section

Scientific articles