Hole, impurity and exciton states in a spherical quantum dot

The 3x3 kp hole Hamiltonian for the wave-function envelopes (effective mass Hamiltonian) was used for calculation of discrete states of the hole and acceptor hydrogenic impurity in a spherical Si/SiO2 nanoheterostructure as a function of the quantum dot radius by neglecting the corrugation of consta...

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Veröffentlicht in:Condensed Matter Physics
Datum:2010
Hauptverfasser: Boichuk, V.I., Bilynskyi, I.V., Leshko, R.Ya.
Format: Artikel
Sprache:English
Veröffentlicht: Інститут фізики конденсованих систем НАН України 2010
Online Zugang:https://nasplib.isofts.kiev.ua/handle/123456789/32046
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Zitieren:Hole, impurity and exciton states in a spherical quantum dot / V.I. Boichuk, I.V. Bilynskyi, R.Ya. Leshko // Condensed Matter Physics. — 2010. — Т. 13, № 1. — С. 13702: 1-12. — Бібліогр.: 26 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
id nasplib_isofts_kiev_ua-123456789-32046
record_format dspace
spelling Boichuk, V.I.
Bilynskyi, I.V.
Leshko, R.Ya.
2012-04-06T17:55:07Z
2012-04-06T17:55:07Z
2010
Hole, impurity and exciton states in a spherical quantum dot / V.I. Boichuk, I.V. Bilynskyi, R.Ya. Leshko // Condensed Matter Physics. — 2010. — Т. 13, № 1. — С. 13702: 1-12. — Бібліогр.: 26 назв. — англ.
1607-324X
PACS: 71.55.-i, 73.21.La, 79.60.Jv
https://nasplib.isofts.kiev.ua/handle/123456789/32046
The 3x3 kp hole Hamiltonian for the wave-function envelopes (effective mass Hamiltonian) was used for calculation of discrete states of the hole and acceptor hydrogenic impurity in a spherical Si/SiO2 nanoheterostructure as a function of the quantum dot radius by neglecting the corrugation of constant-energy surfaces. A study was conducted in the case of finite potential well at the separation boundary of the nanoheterosystem. The dependence of the hole energy spectrum on polarization charges, which arise at the separation boundary of the media, and on the dielectric permittivity, was defined. Using the exact electron and hole solutions, the exciton wave-function was constructed and the exciton ground-state energy was defined. The theoretical results have been compared with experimental data.
en
Інститут фізики конденсованих систем НАН України
Condensed Matter Physics
Hole, impurity and exciton states in a spherical quantum dot
Діркові, домішкові та екситонні стани у сферичній квантовій точці
Article
published earlier
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
title Hole, impurity and exciton states in a spherical quantum dot
spellingShingle Hole, impurity and exciton states in a spherical quantum dot
Boichuk, V.I.
Bilynskyi, I.V.
Leshko, R.Ya.
title_short Hole, impurity and exciton states in a spherical quantum dot
title_full Hole, impurity and exciton states in a spherical quantum dot
title_fullStr Hole, impurity and exciton states in a spherical quantum dot
title_full_unstemmed Hole, impurity and exciton states in a spherical quantum dot
title_sort hole, impurity and exciton states in a spherical quantum dot
author Boichuk, V.I.
Bilynskyi, I.V.
Leshko, R.Ya.
author_facet Boichuk, V.I.
Bilynskyi, I.V.
Leshko, R.Ya.
publishDate 2010
language English
container_title Condensed Matter Physics
publisher Інститут фізики конденсованих систем НАН України
format Article
title_alt Діркові, домішкові та екситонні стани у сферичній квантовій точці
description The 3x3 kp hole Hamiltonian for the wave-function envelopes (effective mass Hamiltonian) was used for calculation of discrete states of the hole and acceptor hydrogenic impurity in a spherical Si/SiO2 nanoheterostructure as a function of the quantum dot radius by neglecting the corrugation of constant-energy surfaces. A study was conducted in the case of finite potential well at the separation boundary of the nanoheterosystem. The dependence of the hole energy spectrum on polarization charges, which arise at the separation boundary of the media, and on the dielectric permittivity, was defined. Using the exact electron and hole solutions, the exciton wave-function was constructed and the exciton ground-state energy was defined. The theoretical results have been compared with experimental data.
issn 1607-324X
url https://nasplib.isofts.kiev.ua/handle/123456789/32046
fulltext
citation_txt Hole, impurity and exciton states in a spherical quantum dot / V.I. Boichuk, I.V. Bilynskyi, R.Ya. Leshko // Condensed Matter Physics. — 2010. — Т. 13, № 1. — С. 13702: 1-12. — Бібліогр.: 26 назв. — англ.
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first_indexed 2025-11-24T11:37:09Z
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