Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7

Ferroic domain walls are nano-objects that are considered functional elements in future devices. Here, the authors study phonons across ferroelastic domain walls by synchrotron-based near-field infrared nano-spectroscopy and relate these changes to the order parameter which helps to understand domai...

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Autores principales: K. A. Smith, E. A. Nowadnick, S. Fan, O. Khatib, S. J. Lim, B. Gao, N. C. Harms, S. N. Neal, J. K. Kirkland, M. C. Martin, C. J. Won, M. B. Raschke, S.-W. Cheong, C. J. Fennie, G. L. Carr, H. A. Bechtel, J. L. Musfeldt
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/a4deffb8fb5c42dc95015804d323710c
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spelling oai:doaj.org-article:a4deffb8fb5c42dc95015804d323710c2021-12-02T15:36:23ZInfrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O710.1038/s41467-019-13066-92041-1723https://doaj.org/article/a4deffb8fb5c42dc95015804d323710c2019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13066-9https://doaj.org/toc/2041-1723Ferroic domain walls are nano-objects that are considered functional elements in future devices. Here, the authors study phonons across ferroelastic domain walls by synchrotron-based near-field infrared nano-spectroscopy and relate these changes to the order parameter which helps to understand domain wall dynamics.K. A. SmithE. A. NowadnickS. FanO. KhatibS. J. LimB. GaoN. C. HarmsS. N. NealJ. K. KirklandM. C. MartinC. J. WonM. B. RaschkeS.-W. CheongC. J. FennieG. L. CarrH. A. BechtelJ. L. MusfeldtNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
K. A. Smith
E. A. Nowadnick
S. Fan
O. Khatib
S. J. Lim
B. Gao
N. C. Harms
S. N. Neal
J. K. Kirkland
M. C. Martin
C. J. Won
M. B. Raschke
S.-W. Cheong
C. J. Fennie
G. L. Carr
H. A. Bechtel
J. L. Musfeldt
Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
description Ferroic domain walls are nano-objects that are considered functional elements in future devices. Here, the authors study phonons across ferroelastic domain walls by synchrotron-based near-field infrared nano-spectroscopy and relate these changes to the order parameter which helps to understand domain wall dynamics.
format article
author K. A. Smith
E. A. Nowadnick
S. Fan
O. Khatib
S. J. Lim
B. Gao
N. C. Harms
S. N. Neal
J. K. Kirkland
M. C. Martin
C. J. Won
M. B. Raschke
S.-W. Cheong
C. J. Fennie
G. L. Carr
H. A. Bechtel
J. L. Musfeldt
author_facet K. A. Smith
E. A. Nowadnick
S. Fan
O. Khatib
S. J. Lim
B. Gao
N. C. Harms
S. N. Neal
J. K. Kirkland
M. C. Martin
C. J. Won
M. B. Raschke
S.-W. Cheong
C. J. Fennie
G. L. Carr
H. A. Bechtel
J. L. Musfeldt
author_sort K. A. Smith
title Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
title_short Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
title_full Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
title_fullStr Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
title_full_unstemmed Infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric Ca3Ti2O7
title_sort infrared nano-spectroscopy of ferroelastic domain walls in hybrid improper ferroelectric ca3ti2o7
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/a4deffb8fb5c42dc95015804d323710c
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