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Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction
Time-resolved x-ray diffraction has been used to measure the low-temperature thermal transport properties of a Pt/Gd(3)Fe(5)O(12)//Gd(3)Ga(5)O(12) metal/oxide heterostructure relevant to applications in spin caloritronics. A pulsed femtosecond optical signal produces a rapid temperature rise in the...
Autores principales: | , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Crystallographic Association
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337877/ https://www.ncbi.nlm.nih.gov/pubmed/35909634 http://dx.doi.org/10.1063/4.0000154 |
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author | Sri Gyan, Deepankar Mannix, Danny Carbone, Dina Sumpter, James L. Geprägs, Stephan Dietlein, Maxim Gross, Rudolf Jurgilaitis, Andrius Pham, Van-Thai Coudert-Alteirac, Hélène Larsson, Jörgen Haskel, Daniel Strempfer, Jörg Evans, Paul G. |
author_facet | Sri Gyan, Deepankar Mannix, Danny Carbone, Dina Sumpter, James L. Geprägs, Stephan Dietlein, Maxim Gross, Rudolf Jurgilaitis, Andrius Pham, Van-Thai Coudert-Alteirac, Hélène Larsson, Jörgen Haskel, Daniel Strempfer, Jörg Evans, Paul G. |
author_sort | Sri Gyan, Deepankar |
collection | PubMed |
description | Time-resolved x-ray diffraction has been used to measure the low-temperature thermal transport properties of a Pt/Gd(3)Fe(5)O(12)//Gd(3)Ga(5)O(12) metal/oxide heterostructure relevant to applications in spin caloritronics. A pulsed femtosecond optical signal produces a rapid temperature rise in the Pt layer, followed by heat transport into the Gd(3)Fe(5)O(12) (GdIG) thin film and the Gd(3)Ga(5)O(12) (GGG) substrate. The time dependence of x-ray diffraction from the GdIG layer was tracked using an accelerator-based femtosecond x-ray source. The ultrafast diffraction measurements probed the intensity of the GdIG (1 −1 2) x-ray reflection in a grazing-incidence x-ray diffraction geometry. The comparison of the variation of the diffracted x-ray intensity with a model including heat transport and the temperature dependence of the GdIG lattice parameter allows the thermal conductance of the Pt/GdIG and GdIG//GGG interfaces to be determined. Complementary synchrotron x-ray diffraction studies of the low-temperature thermal expansion properties of the GdIG layer provide a precise calibration of the temperature dependence of the GdIG lattice parameter. The interfacial thermal conductance of the Pt/GdIG and GdIG//GGG interfaces determined from the time-resolved diffraction study is of the same order of magnitude as previous reports for metal/oxide and epitaxial dielectric interfaces. The thermal parameters of the Pt/GdIG//GGG heterostructure will aid in the design and implementation of thermal transport devices and nanostructures. |
format | Online Article Text |
id | pubmed-9337877 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | American Crystallographic Association |
record_format | MEDLINE/PubMed |
spelling | pubmed-93378772022-07-30 Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction Sri Gyan, Deepankar Mannix, Danny Carbone, Dina Sumpter, James L. Geprägs, Stephan Dietlein, Maxim Gross, Rudolf Jurgilaitis, Andrius Pham, Van-Thai Coudert-Alteirac, Hélène Larsson, Jörgen Haskel, Daniel Strempfer, Jörg Evans, Paul G. Struct Dyn ARTICLES Time-resolved x-ray diffraction has been used to measure the low-temperature thermal transport properties of a Pt/Gd(3)Fe(5)O(12)//Gd(3)Ga(5)O(12) metal/oxide heterostructure relevant to applications in spin caloritronics. A pulsed femtosecond optical signal produces a rapid temperature rise in the Pt layer, followed by heat transport into the Gd(3)Fe(5)O(12) (GdIG) thin film and the Gd(3)Ga(5)O(12) (GGG) substrate. The time dependence of x-ray diffraction from the GdIG layer was tracked using an accelerator-based femtosecond x-ray source. The ultrafast diffraction measurements probed the intensity of the GdIG (1 −1 2) x-ray reflection in a grazing-incidence x-ray diffraction geometry. The comparison of the variation of the diffracted x-ray intensity with a model including heat transport and the temperature dependence of the GdIG lattice parameter allows the thermal conductance of the Pt/GdIG and GdIG//GGG interfaces to be determined. Complementary synchrotron x-ray diffraction studies of the low-temperature thermal expansion properties of the GdIG layer provide a precise calibration of the temperature dependence of the GdIG lattice parameter. The interfacial thermal conductance of the Pt/GdIG and GdIG//GGG interfaces determined from the time-resolved diffraction study is of the same order of magnitude as previous reports for metal/oxide and epitaxial dielectric interfaces. The thermal parameters of the Pt/GdIG//GGG heterostructure will aid in the design and implementation of thermal transport devices and nanostructures. American Crystallographic Association 2022-07-28 /pmc/articles/PMC9337877/ /pubmed/35909634 http://dx.doi.org/10.1063/4.0000154 Text en © 2022 Author(s). https://creativecommons.org/licenses/by/4.0/All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ). |
spellingShingle | ARTICLES Sri Gyan, Deepankar Mannix, Danny Carbone, Dina Sumpter, James L. Geprägs, Stephan Dietlein, Maxim Gross, Rudolf Jurgilaitis, Andrius Pham, Van-Thai Coudert-Alteirac, Hélène Larsson, Jörgen Haskel, Daniel Strempfer, Jörg Evans, Paul G. Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title | Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title_full | Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title_fullStr | Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title_full_unstemmed | Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title_short | Low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
title_sort | low-temperature nanoscale heat transport in a gadolinium iron garnet heterostructure probed by ultrafast x-ray diffraction |
topic | ARTICLES |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9337877/ https://www.ncbi.nlm.nih.gov/pubmed/35909634 http://dx.doi.org/10.1063/4.0000154 |
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