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Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film

The impact of europium doping on the electronic and structural properties of the topological insulator Bi(2)Te(3) is studied in this paper. The crystallographic structure studied by electron diffraction and transmission microscopy confirms that grown by Molecular Beam Epitaxy (MBE) system film with...

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Autores principales: Balin, Katarzyna, Wojtyniak, Marcin, Weis, Mateusz, Zubko, Maciej, Wilk, Bartosz, Gu, Ruizhe, Ruello, Pascal, Szade, Jacek
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7411847/
https://www.ncbi.nlm.nih.gov/pubmed/32668572
http://dx.doi.org/10.3390/ma13143111
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author Balin, Katarzyna
Wojtyniak, Marcin
Weis, Mateusz
Zubko, Maciej
Wilk, Bartosz
Gu, Ruizhe
Ruello, Pascal
Szade, Jacek
author_facet Balin, Katarzyna
Wojtyniak, Marcin
Weis, Mateusz
Zubko, Maciej
Wilk, Bartosz
Gu, Ruizhe
Ruello, Pascal
Szade, Jacek
author_sort Balin, Katarzyna
collection PubMed
description The impact of europium doping on the electronic and structural properties of the topological insulator Bi(2)Te(3) is studied in this paper. The crystallographic structure studied by electron diffraction and transmission microscopy confirms that grown by Molecular Beam Epitaxy (MBE) system film with the Eu content of about 3% has a trigonal structure with relatively large monocrystalline grains. The X-ray photoemission spectroscopy indicates that europium in Bi(2)Te(3) matrix remains divalent and substitutes bismuth in a Bi(2)Te(3) matrix. An exceptional ratio of the photoemission 4d multiplet components in Eu doped film was observed. However, some spatial inhomogeneity at the nanometer scale is revealed. Firstly, local conductivity measurements indicate that the surface conductivity is inhomogeneous and is correlated with a topographic image revealing possible coexistence of conducting surface states with insulating regions. Secondly, Time of Flight Secondary Ion Mass Spectrometry (TOF-SIMS) depth-profiling also shows partial chemical segregation. Such in-depth inhomogeneity has an impact on the lattice dynamics (phonon lifetime) evaluated by femtosecond spectroscopy. This unprecedented set of experimental investigations provides important insights for optimizing the process of growth of high-quality Eu-doped thin films of a Bi(2)Te(3) topological insulator. Understanding such complex behaviors at the nanoscale level is a necessary step before considering topological insulator thin films as a component of innovative devices.
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spelling pubmed-74118472020-08-25 Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film Balin, Katarzyna Wojtyniak, Marcin Weis, Mateusz Zubko, Maciej Wilk, Bartosz Gu, Ruizhe Ruello, Pascal Szade, Jacek Materials (Basel) Article The impact of europium doping on the electronic and structural properties of the topological insulator Bi(2)Te(3) is studied in this paper. The crystallographic structure studied by electron diffraction and transmission microscopy confirms that grown by Molecular Beam Epitaxy (MBE) system film with the Eu content of about 3% has a trigonal structure with relatively large monocrystalline grains. The X-ray photoemission spectroscopy indicates that europium in Bi(2)Te(3) matrix remains divalent and substitutes bismuth in a Bi(2)Te(3) matrix. An exceptional ratio of the photoemission 4d multiplet components in Eu doped film was observed. However, some spatial inhomogeneity at the nanometer scale is revealed. Firstly, local conductivity measurements indicate that the surface conductivity is inhomogeneous and is correlated with a topographic image revealing possible coexistence of conducting surface states with insulating regions. Secondly, Time of Flight Secondary Ion Mass Spectrometry (TOF-SIMS) depth-profiling also shows partial chemical segregation. Such in-depth inhomogeneity has an impact on the lattice dynamics (phonon lifetime) evaluated by femtosecond spectroscopy. This unprecedented set of experimental investigations provides important insights for optimizing the process of growth of high-quality Eu-doped thin films of a Bi(2)Te(3) topological insulator. Understanding such complex behaviors at the nanoscale level is a necessary step before considering topological insulator thin films as a component of innovative devices. MDPI 2020-07-13 /pmc/articles/PMC7411847/ /pubmed/32668572 http://dx.doi.org/10.3390/ma13143111 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Balin, Katarzyna
Wojtyniak, Marcin
Weis, Mateusz
Zubko, Maciej
Wilk, Bartosz
Gu, Ruizhe
Ruello, Pascal
Szade, Jacek
Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title_full Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title_fullStr Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title_full_unstemmed Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title_short Europium Doping Impact on the Properties of MBE Grown Bi(2)Te(3) Thin Film
title_sort europium doping impact on the properties of mbe grown bi(2)te(3) thin film
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7411847/
https://www.ncbi.nlm.nih.gov/pubmed/32668572
http://dx.doi.org/10.3390/ma13143111
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