Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy

Understanding the structure of domain walls is an important step in developing nanoscale ferroelectric devices. Here, the authors use second harmonic imaging to verify predictions of Bloch and Néel, rather than simple Ising, domain wall structures in lead zirconium titanate and lithium tantalate.

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Autores principales: Salia Cherifi-Hertel, Hervé Bulou, Riccardo Hertel, Grégory Taupier, Kokou Dodzi (Honorat) Dorkenoo, Christian Andreas, Jill Guyonnet, Iaroslav Gaponenko, Katia Gallo, Patrycja Paruch
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/9b00566a8f084dc5a7350c4da5d43363
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spelling oai:doaj.org-article:9b00566a8f084dc5a7350c4da5d433632021-12-02T14:42:43ZNon-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy10.1038/ncomms157682041-1723https://doaj.org/article/9b00566a8f084dc5a7350c4da5d433632017-06-01T00:00:00Zhttps://doi.org/10.1038/ncomms15768https://doaj.org/toc/2041-1723Understanding the structure of domain walls is an important step in developing nanoscale ferroelectric devices. Here, the authors use second harmonic imaging to verify predictions of Bloch and Néel, rather than simple Ising, domain wall structures in lead zirconium titanate and lithium tantalate.Salia Cherifi-HertelHervé BulouRiccardo HertelGrégory TaupierKokou Dodzi (Honorat) DorkenooChristian AndreasJill GuyonnetIaroslav GaponenkoKatia GalloPatrycja ParuchNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Salia Cherifi-Hertel
Hervé Bulou
Riccardo Hertel
Grégory Taupier
Kokou Dodzi (Honorat) Dorkenoo
Christian Andreas
Jill Guyonnet
Iaroslav Gaponenko
Katia Gallo
Patrycja Paruch
Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
description Understanding the structure of domain walls is an important step in developing nanoscale ferroelectric devices. Here, the authors use second harmonic imaging to verify predictions of Bloch and Néel, rather than simple Ising, domain wall structures in lead zirconium titanate and lithium tantalate.
format article
author Salia Cherifi-Hertel
Hervé Bulou
Riccardo Hertel
Grégory Taupier
Kokou Dodzi (Honorat) Dorkenoo
Christian Andreas
Jill Guyonnet
Iaroslav Gaponenko
Katia Gallo
Patrycja Paruch
author_facet Salia Cherifi-Hertel
Hervé Bulou
Riccardo Hertel
Grégory Taupier
Kokou Dodzi (Honorat) Dorkenoo
Christian Andreas
Jill Guyonnet
Iaroslav Gaponenko
Katia Gallo
Patrycja Paruch
author_sort Salia Cherifi-Hertel
title Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
title_short Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
title_full Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
title_fullStr Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
title_full_unstemmed Non-Ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
title_sort non-ising and chiral ferroelectric domain walls revealed by nonlinear optical microscopy
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/9b00566a8f084dc5a7350c4da5d43363
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AT hervebulou nonisingandchiralferroelectricdomainwallsrevealedbynonlinearopticalmicroscopy
AT riccardohertel nonisingandchiralferroelectricdomainwallsrevealedbynonlinearopticalmicroscopy
AT gregorytaupier nonisingandchiralferroelectricdomainwallsrevealedbynonlinearopticalmicroscopy
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