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Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)

The spatial confinement of atoms at surfaces and interfaces significantly alters the lattice dynamics of thin films, heterostructures and multilayers. Ultrathin films with high dielectric constants (high-k) are of paramount interest for applications as gate layers in current and future integrated ci...

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Autores principales: Stankov, Svetoslav, Merkel, Dániel G., Kalt, Jochen, Göttlicher, Jörg, Łażewski, Jan, Sternik, Małgorzata, Jochym, Paweł T., Piekarz, Przemysław, Baumbach, Tilo, Chumakov, Aleksandr I., Rüffer, Rudolf
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419856/
https://www.ncbi.nlm.nih.gov/pubmed/36132967
http://dx.doi.org/10.1039/d1na00728a
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author Stankov, Svetoslav
Merkel, Dániel G.
Kalt, Jochen
Göttlicher, Jörg
Łażewski, Jan
Sternik, Małgorzata
Jochym, Paweł T.
Piekarz, Przemysław
Baumbach, Tilo
Chumakov, Aleksandr I.
Rüffer, Rudolf
author_facet Stankov, Svetoslav
Merkel, Dániel G.
Kalt, Jochen
Göttlicher, Jörg
Łażewski, Jan
Sternik, Małgorzata
Jochym, Paweł T.
Piekarz, Przemysław
Baumbach, Tilo
Chumakov, Aleksandr I.
Rüffer, Rudolf
author_sort Stankov, Svetoslav
collection PubMed
description The spatial confinement of atoms at surfaces and interfaces significantly alters the lattice dynamics of thin films, heterostructures and multilayers. Ultrathin films with high dielectric constants (high-k) are of paramount interest for applications as gate layers in current and future integrated circuits. Here we report a lattice dynamics study of high-k Eu(2)O(3) films with thicknesses of 21.3, 2.2, 1.3, and 0.8 nm deposited on YSZ(001). The Eu-partial phonon density of states (PDOS), obtained from nuclear inelastic scattering, exhibits broadening of the phonon peaks accompanied by up to a four-fold enhancement of the number of low-energy states compared to the ab initio calculated PDOS of a perfect Eu(2)O(3) crystal. Our analysis demonstrates that while the former effect reflects the reduced phonon lifetimes observed in thin films due to scattering from lattice defects, the latter phenomenon arises from an ultrathin EuO layer formed between the thin Eu(2)O(3) film and the YSZ(001) substrate. Thus, our work uncovers another potential source of vibrational anomalies in thin films and multilayers, which has to be cautiously considered.
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spelling pubmed-94198562022-09-20 Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001) Stankov, Svetoslav Merkel, Dániel G. Kalt, Jochen Göttlicher, Jörg Łażewski, Jan Sternik, Małgorzata Jochym, Paweł T. Piekarz, Przemysław Baumbach, Tilo Chumakov, Aleksandr I. Rüffer, Rudolf Nanoscale Adv Chemistry The spatial confinement of atoms at surfaces and interfaces significantly alters the lattice dynamics of thin films, heterostructures and multilayers. Ultrathin films with high dielectric constants (high-k) are of paramount interest for applications as gate layers in current and future integrated circuits. Here we report a lattice dynamics study of high-k Eu(2)O(3) films with thicknesses of 21.3, 2.2, 1.3, and 0.8 nm deposited on YSZ(001). The Eu-partial phonon density of states (PDOS), obtained from nuclear inelastic scattering, exhibits broadening of the phonon peaks accompanied by up to a four-fold enhancement of the number of low-energy states compared to the ab initio calculated PDOS of a perfect Eu(2)O(3) crystal. Our analysis demonstrates that while the former effect reflects the reduced phonon lifetimes observed in thin films due to scattering from lattice defects, the latter phenomenon arises from an ultrathin EuO layer formed between the thin Eu(2)O(3) film and the YSZ(001) substrate. Thus, our work uncovers another potential source of vibrational anomalies in thin films and multilayers, which has to be cautiously considered. RSC 2021-12-07 /pmc/articles/PMC9419856/ /pubmed/36132967 http://dx.doi.org/10.1039/d1na00728a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Stankov, Svetoslav
Merkel, Dániel G.
Kalt, Jochen
Göttlicher, Jörg
Łażewski, Jan
Sternik, Małgorzata
Jochym, Paweł T.
Piekarz, Przemysław
Baumbach, Tilo
Chumakov, Aleksandr I.
Rüffer, Rudolf
Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title_full Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title_fullStr Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title_full_unstemmed Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title_short Phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of Eu(2)O(3) on YSZ(001)
title_sort phonon confinement and interface lattice dynamics of ultrathin high-k rare earth sesquioxide films: the case of eu(2)o(3) on ysz(001)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419856/
https://www.ncbi.nlm.nih.gov/pubmed/36132967
http://dx.doi.org/10.1039/d1na00728a
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