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Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics

Collective lattice dynamics determine essential aspects of condensed matter, such as elastic and thermal properties. These exhibit strong dependence on the length-scale, reflecting the marked wavevector dependence of lattice excitations. The extreme ultraviolet transient grating (EUV TG) approach ha...

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Autores principales: Foglia, L., Mincigrucci, R., Maznev, A.A., Baldi, G., Capotondi, F., Caporaletti, F., Comin, R., De Angelis, D., Duncan, R.A., Fainozzi, D., Kurdi, G., Li, J., Martinelli, A., Masciovecchio, C., Monaco, G., Milloch, A., Nelson, K.A., Occhialini, C.A., Pancaldi, M., Pedersoli, E., Pelli-Cresi, J.S., Simoncig, A., Travasso, F., Wehinger, B., Zanatta, M., Bencivenga, F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9883289/
https://www.ncbi.nlm.nih.gov/pubmed/36718271
http://dx.doi.org/10.1016/j.pacs.2023.100453
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author Foglia, L.
Mincigrucci, R.
Maznev, A.A.
Baldi, G.
Capotondi, F.
Caporaletti, F.
Comin, R.
De Angelis, D.
Duncan, R.A.
Fainozzi, D.
Kurdi, G.
Li, J.
Martinelli, A.
Masciovecchio, C.
Monaco, G.
Milloch, A.
Nelson, K.A.
Occhialini, C.A.
Pancaldi, M.
Pedersoli, E.
Pelli-Cresi, J.S.
Simoncig, A.
Travasso, F.
Wehinger, B.
Zanatta, M.
Bencivenga, F.
author_facet Foglia, L.
Mincigrucci, R.
Maznev, A.A.
Baldi, G.
Capotondi, F.
Caporaletti, F.
Comin, R.
De Angelis, D.
Duncan, R.A.
Fainozzi, D.
Kurdi, G.
Li, J.
Martinelli, A.
Masciovecchio, C.
Monaco, G.
Milloch, A.
Nelson, K.A.
Occhialini, C.A.
Pancaldi, M.
Pedersoli, E.
Pelli-Cresi, J.S.
Simoncig, A.
Travasso, F.
Wehinger, B.
Zanatta, M.
Bencivenga, F.
author_sort Foglia, L.
collection PubMed
description Collective lattice dynamics determine essential aspects of condensed matter, such as elastic and thermal properties. These exhibit strong dependence on the length-scale, reflecting the marked wavevector dependence of lattice excitations. The extreme ultraviolet transient grating (EUV TG) approach has demonstrated the potential of accessing a wavevector range corresponding to the 10s of nm length-scale, representing a spatial scale of the highest relevance for fundamental physics and forefront technology, previously inaccessible by optical TG and other inelastic scattering methods. In this manuscript we report on the capabilities of this technique in the context of probing thermoelastic properties of matter, both in the bulk and at the surface, as well as discussing future developments and practical considerations.
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spelling pubmed-98832892023-01-29 Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics Foglia, L. Mincigrucci, R. Maznev, A.A. Baldi, G. Capotondi, F. Caporaletti, F. Comin, R. De Angelis, D. Duncan, R.A. Fainozzi, D. Kurdi, G. Li, J. Martinelli, A. Masciovecchio, C. Monaco, G. Milloch, A. Nelson, K.A. Occhialini, C.A. Pancaldi, M. Pedersoli, E. Pelli-Cresi, J.S. Simoncig, A. Travasso, F. Wehinger, B. Zanatta, M. Bencivenga, F. Photoacoustics Research Article Collective lattice dynamics determine essential aspects of condensed matter, such as elastic and thermal properties. These exhibit strong dependence on the length-scale, reflecting the marked wavevector dependence of lattice excitations. The extreme ultraviolet transient grating (EUV TG) approach has demonstrated the potential of accessing a wavevector range corresponding to the 10s of nm length-scale, representing a spatial scale of the highest relevance for fundamental physics and forefront technology, previously inaccessible by optical TG and other inelastic scattering methods. In this manuscript we report on the capabilities of this technique in the context of probing thermoelastic properties of matter, both in the bulk and at the surface, as well as discussing future developments and practical considerations. Elsevier 2023-01-19 /pmc/articles/PMC9883289/ /pubmed/36718271 http://dx.doi.org/10.1016/j.pacs.2023.100453 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Foglia, L.
Mincigrucci, R.
Maznev, A.A.
Baldi, G.
Capotondi, F.
Caporaletti, F.
Comin, R.
De Angelis, D.
Duncan, R.A.
Fainozzi, D.
Kurdi, G.
Li, J.
Martinelli, A.
Masciovecchio, C.
Monaco, G.
Milloch, A.
Nelson, K.A.
Occhialini, C.A.
Pancaldi, M.
Pedersoli, E.
Pelli-Cresi, J.S.
Simoncig, A.
Travasso, F.
Wehinger, B.
Zanatta, M.
Bencivenga, F.
Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title_full Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title_fullStr Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title_full_unstemmed Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title_short Extreme ultraviolet transient gratings: A tool for nanoscale photoacoustics
title_sort extreme ultraviolet transient gratings: a tool for nanoscale photoacoustics
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9883289/
https://www.ncbi.nlm.nih.gov/pubmed/36718271
http://dx.doi.org/10.1016/j.pacs.2023.100453
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