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Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies

Wide-range continuous spatial variation of the film composition in lateral compositionally graded epitaxial films requires the development of high throughput measurement techniques for their local and non-destructive characterization with the highest possible spatial resolution. Here we report on th...

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Autores principales: Sandeep, Sathyan, Raetz, Samuel, Wolfman, Jerome, Negulescu, Beatrice, Liu, Guozhen, Longuet, Jean-Louis, Thréard, Théo, Gusev, Vitalyi E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8622591/
https://www.ncbi.nlm.nih.gov/pubmed/34835895
http://dx.doi.org/10.3390/nano11113131
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author Sandeep, Sathyan
Raetz, Samuel
Wolfman, Jerome
Negulescu, Beatrice
Liu, Guozhen
Longuet, Jean-Louis
Thréard, Théo
Gusev, Vitalyi E.
author_facet Sandeep, Sathyan
Raetz, Samuel
Wolfman, Jerome
Negulescu, Beatrice
Liu, Guozhen
Longuet, Jean-Louis
Thréard, Théo
Gusev, Vitalyi E.
author_sort Sandeep, Sathyan
collection PubMed
description Wide-range continuous spatial variation of the film composition in lateral compositionally graded epitaxial films requires the development of high throughput measurement techniques for their local and non-destructive characterization with the highest possible spatial resolution. Here we report on the first application of the picosecond laser ultrasonics (PLU) technique for the evaluation of acoustical and optical parameters of lateral compositionally graded film, the Ba(1−x)Sr(x)TiO(3) (0 ≤ x ≤ 1) material library. The film was not dedicatedly prepared for its opto-acousto-optic evaluation by PLU, exhibiting significant lateral variations in thickness and surface roughness. Therefore, the achieved measurements of the sound velocity and of the optical refractive index, and characterization of the surface roughness confirm the robustness of the PLU technique for thin film evaluation. We hope that the first measurements of the acoustical and optical properties of epitaxial grown Ba(1−x)Sr(x)TiO(3) (0 ≤ x ≤ 1) by PLU technique accomplished here provide the parameters required for more extended predictive design of the phononic, photonic and phoxonic mirrors and cavities with superior properties/functionalities for novel multifunctional nanodevices.
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spelling pubmed-86225912021-11-27 Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies Sandeep, Sathyan Raetz, Samuel Wolfman, Jerome Negulescu, Beatrice Liu, Guozhen Longuet, Jean-Louis Thréard, Théo Gusev, Vitalyi E. Nanomaterials (Basel) Article Wide-range continuous spatial variation of the film composition in lateral compositionally graded epitaxial films requires the development of high throughput measurement techniques for their local and non-destructive characterization with the highest possible spatial resolution. Here we report on the first application of the picosecond laser ultrasonics (PLU) technique for the evaluation of acoustical and optical parameters of lateral compositionally graded film, the Ba(1−x)Sr(x)TiO(3) (0 ≤ x ≤ 1) material library. The film was not dedicatedly prepared for its opto-acousto-optic evaluation by PLU, exhibiting significant lateral variations in thickness and surface roughness. Therefore, the achieved measurements of the sound velocity and of the optical refractive index, and characterization of the surface roughness confirm the robustness of the PLU technique for thin film evaluation. We hope that the first measurements of the acoustical and optical properties of epitaxial grown Ba(1−x)Sr(x)TiO(3) (0 ≤ x ≤ 1) by PLU technique accomplished here provide the parameters required for more extended predictive design of the phononic, photonic and phoxonic mirrors and cavities with superior properties/functionalities for novel multifunctional nanodevices. MDPI 2021-11-20 /pmc/articles/PMC8622591/ /pubmed/34835895 http://dx.doi.org/10.3390/nano11113131 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sandeep, Sathyan
Raetz, Samuel
Wolfman, Jerome
Negulescu, Beatrice
Liu, Guozhen
Longuet, Jean-Louis
Thréard, Théo
Gusev, Vitalyi E.
Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title_full Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title_fullStr Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title_full_unstemmed Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title_short Evaluation of Optical and Acoustical Properties of Ba(1−x)Sr(x)TiO(3) Thin Film Material Library via Conjugation of Picosecond Laser Ultrasonics with X-ray Diffraction, Energy Dispersive Spectroscopy, Electron Probe Micro Analysis, Scanning Electron and Atomic Force Microscopies
title_sort evaluation of optical and acoustical properties of ba(1−x)sr(x)tio(3) thin film material library via conjugation of picosecond laser ultrasonics with x-ray diffraction, energy dispersive spectroscopy, electron probe micro analysis, scanning electron and atomic force microscopies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8622591/
https://www.ncbi.nlm.nih.gov/pubmed/34835895
http://dx.doi.org/10.3390/nano11113131
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