The origin of incipient ferroelectricity in lead telluride

Group IV–VI materials often exist in a state near an electronic or structural phase transition. Here, the authors use ultrafast X-ray scattering to show that coupling of band-edge electrons and phonons causes the ferroelectric instability observed in lead telluride.

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Autores principales: M. P. Jiang, M. Trigo, I. Savić, S. Fahy, É. D. Murray, C. Bray, J. Clark, T. Henighan, M. Kozina, M. Chollet, J. M. Glownia, M. C. Hoffmann, D. Zhu, O. Delaire, A. F. May, B. C. Sales, A. M. Lindenberg, P. Zalden, T. Sato, R. Merlin, D. A. Reis
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/83f4952e5a204f1b813f568524223b8f
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spelling oai:doaj.org-article:83f4952e5a204f1b813f568524223b8f2021-12-02T15:34:31ZThe origin of incipient ferroelectricity in lead telluride10.1038/ncomms122912041-1723https://doaj.org/article/83f4952e5a204f1b813f568524223b8f2016-07-01T00:00:00Zhttps://doi.org/10.1038/ncomms12291https://doaj.org/toc/2041-1723Group IV–VI materials often exist in a state near an electronic or structural phase transition. Here, the authors use ultrafast X-ray scattering to show that coupling of band-edge electrons and phonons causes the ferroelectric instability observed in lead telluride.M. P. JiangM. TrigoI. SavićS. FahyÉ. D. MurrayC. BrayJ. ClarkT. HenighanM. KozinaM. CholletJ. M. GlowniaM. C. HoffmannD. ZhuO. DelaireA. F. MayB. C. SalesA. M. LindenbergP. ZaldenT. SatoR. MerlinD. A. ReisNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
M. P. Jiang
M. Trigo
I. Savić
S. Fahy
É. D. Murray
C. Bray
J. Clark
T. Henighan
M. Kozina
M. Chollet
J. M. Glownia
M. C. Hoffmann
D. Zhu
O. Delaire
A. F. May
B. C. Sales
A. M. Lindenberg
P. Zalden
T. Sato
R. Merlin
D. A. Reis
The origin of incipient ferroelectricity in lead telluride
description Group IV–VI materials often exist in a state near an electronic or structural phase transition. Here, the authors use ultrafast X-ray scattering to show that coupling of band-edge electrons and phonons causes the ferroelectric instability observed in lead telluride.
format article
author M. P. Jiang
M. Trigo
I. Savić
S. Fahy
É. D. Murray
C. Bray
J. Clark
T. Henighan
M. Kozina
M. Chollet
J. M. Glownia
M. C. Hoffmann
D. Zhu
O. Delaire
A. F. May
B. C. Sales
A. M. Lindenberg
P. Zalden
T. Sato
R. Merlin
D. A. Reis
author_facet M. P. Jiang
M. Trigo
I. Savić
S. Fahy
É. D. Murray
C. Bray
J. Clark
T. Henighan
M. Kozina
M. Chollet
J. M. Glownia
M. C. Hoffmann
D. Zhu
O. Delaire
A. F. May
B. C. Sales
A. M. Lindenberg
P. Zalden
T. Sato
R. Merlin
D. A. Reis
author_sort M. P. Jiang
title The origin of incipient ferroelectricity in lead telluride
title_short The origin of incipient ferroelectricity in lead telluride
title_full The origin of incipient ferroelectricity in lead telluride
title_fullStr The origin of incipient ferroelectricity in lead telluride
title_full_unstemmed The origin of incipient ferroelectricity in lead telluride
title_sort origin of incipient ferroelectricity in lead telluride
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/83f4952e5a204f1b813f568524223b8f
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