Electron and hole energy spectrum of non-concentric spherical core-shell quantum dot under an externally applied electric field

A model of the non-concentric spherical core–shell quantum dot under the influence of an externally applied electric field was proposed. It was established that the energy spectrum of both the electron and the hole depends on the intensity of the electric field as well as on the specific location o...

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Bibliographic Details
Main Authors: R. Ya. Leshko, I. V. Bilynskyi, O. V. Leshko, M. Yu. Popov, A. O. Ocheretyanyi
Format: Article
Language:English
Published: Institute for Condensed Matter Physics 2024-12-01
Series:Condensed Matter Physics
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Online Access:https://cmpj2.icmp.lviv.ua/index.php/cmpj/article/view/113
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Summary:A model of the non-concentric spherical core–shell quantum dot under the influence of an externally applied electric field was proposed. It was established that the energy spectrum of both the electron and the hole depends on the intensity of the electric field as well as on the specific location of the core within the quantum dot. The phenomenon of energy level splitting and degeneration was analyzed in detail. Additionally, the variations in the optical gap were determined and expressed as a function of the applied electric field strength and the position of the core in the quantum dot.
ISSN:1607-324X
2224-9079