Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon

The review article deals with ‘quantum engineering’ of growing of silver films on semiconductor substrates that allows obtaining new forms of matter. The results on the energy dispersion of electron states in epitaxial Ag(111) films obtained on Si(001) and Si(111) are presented. The splitting of ban...

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Main Authors: L. I. Karbivska, V. L. Karbivskyy, A. O. Romanskyy
Format: Article
Language:English
Published: G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine 2019-09-01
Series:Успехи физики металлов
Subjects:
Online Access:https://doi.org/10.15407/ufm.20.03.502
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spelling doaj-05821ef650f34a9eb1cd2d6275af33402020-11-25T03:54:02ZengG. V. Kurdyumov Institute for Metal Physics of the N.A.S. of UkraineУспехи физики металлов 1608-10212617-07952019-09-0120350253210.15407/ufm.20.03.502Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on SiliconL. I. KarbivskaV. L. KarbivskyyA. O. RomanskyyThe review article deals with ‘quantum engineering’ of growing of silver films on semiconductor substrates that allows obtaining new forms of matter. The results on the energy dispersion of electron states in epitaxial Ag(111) films obtained on Si(001) and Si(111) are presented. The splitting of bands is explained, and analysis of the Shockley’s surface states is given. Superstructures, which are formed on the surface of monolayer silver nanostructures, are analysed in detail. A detailed analysis of the energy states of the noble-metal quantum wells is given. The mechanism of formation of a noble-metal nanorelief on the (111) and (110) surfaces of Si single crystal during multistage thermal deposition is investigated. The symmetry of the interface surface of the single-crystal Si(111)7×7 silicon plane is deterministic in the growth mechanism of the hexagonal-pyramidal structures of copper, silver, and gold. The morphological features of the indium surface during its thermal deposition on the Si(111) and Si(110) surfaces are investigated. The formation of clusters of a regular cubic shape is observed that indicates the formation of In nanocrystals. The formation of In nanoclusters (of ≈10 nm size) on the Si(111) surface and the subsequent modification of the single-crystal surface morphology response in the calculated curves of electron density of states.https://doi.org/10.15407/ufm.20.03.502quantum wellsenergy dispersionnoble metalssurfacemorphologyscanning tunnelling microscopythermal deposition
collection DOAJ
language English
format Article
sources DOAJ
author L. I. Karbivska
V. L. Karbivskyy
A. O. Romanskyy
spellingShingle L. I. Karbivska
V. L. Karbivskyy
A. O. Romanskyy
Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
Успехи физики металлов
quantum wells
energy dispersion
noble metals
surface
morphology
scanning tunnelling microscopy
thermal deposition
author_facet L. I. Karbivska
V. L. Karbivskyy
A. O. Romanskyy
author_sort L. I. Karbivska
title Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
title_short Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
title_full Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
title_fullStr Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
title_full_unstemmed Determinism of the Symmetry of a Single-Crystalline Surface of Interface at Obtaining 0D- and 2D-Structues of Noble Metals and Indium on Silicon
title_sort determinism of the symmetry of a single-crystalline surface of interface at obtaining 0d- and 2d-structues of noble metals and indium on silicon
publisher G. V. Kurdyumov Institute for Metal Physics of the N.A.S. of Ukraine
series Успехи физики металлов
issn 1608-1021
2617-0795
publishDate 2019-09-01
description The review article deals with ‘quantum engineering’ of growing of silver films on semiconductor substrates that allows obtaining new forms of matter. The results on the energy dispersion of electron states in epitaxial Ag(111) films obtained on Si(001) and Si(111) are presented. The splitting of bands is explained, and analysis of the Shockley’s surface states is given. Superstructures, which are formed on the surface of monolayer silver nanostructures, are analysed in detail. A detailed analysis of the energy states of the noble-metal quantum wells is given. The mechanism of formation of a noble-metal nanorelief on the (111) and (110) surfaces of Si single crystal during multistage thermal deposition is investigated. The symmetry of the interface surface of the single-crystal Si(111)7×7 silicon plane is deterministic in the growth mechanism of the hexagonal-pyramidal structures of copper, silver, and gold. The morphological features of the indium surface during its thermal deposition on the Si(111) and Si(110) surfaces are investigated. The formation of clusters of a regular cubic shape is observed that indicates the formation of In nanocrystals. The formation of In nanoclusters (of ≈10 nm size) on the Si(111) surface and the subsequent modification of the single-crystal surface morphology response in the calculated curves of electron density of states.
topic quantum wells
energy dispersion
noble metals
surface
morphology
scanning tunnelling microscopy
thermal deposition
url https://doi.org/10.15407/ufm.20.03.502
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AT vlkarbivskyy determinismofthesymmetryofasinglecrystallinesurfaceofinterfaceatobtaining0dand2dstructuesofnoblemetalsandindiumonsilicon
AT aoromanskyy determinismofthesymmetryofasinglecrystallinesurfaceofinterfaceatobtaining0dand2dstructuesofnoblemetalsandindiumonsilicon
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