Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites
The improper ferroelectricity in YMnO_{3} and other related multiferroic hexagonal manganites is known to cause topologically protected ferroelectric domains that give rise to rich and diverse physical phenomena. The local structure and structural coherence across the ferroelectric transition, howev...
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Series: | Physical Review X |
Online Access: | http://doi.org/10.1103/PhysRevX.9.031001 |
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doaj-fc01b6b77c164232a3dbedab66837ec42020-11-25T00:25:39ZengAmerican Physical SocietyPhysical Review X2160-33082019-07-019303100110.1103/PhysRevX.9.031001Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal ManganitesSandra H. SkjærvøQuintin N. MeierMikhail FeygensonNicola A. SpaldinSimon J. L. BillingeEmil S. BozinSverre M. SelbachThe improper ferroelectricity in YMnO_{3} and other related multiferroic hexagonal manganites is known to cause topologically protected ferroelectric domains that give rise to rich and diverse physical phenomena. The local structure and structural coherence across the ferroelectric transition, however, were previously not well understood. Here, we reveal the evolution of the local structure with temperature in YMnO_{3} using neutron total scattering techniques, and we interpret them with the help of first-principles calculations and with a first-principles-based effective Hamiltonian. The results show that, at room temperature, the local and average structures are consistent with the established ferroelectric P6_{3}cm symmetry. On heating, both local and average structural analyses show striking anomalies from about 800 K up to the Curie temperature and signatures of a locally more preserved structure than on average, consistent with increasing fluctuations of the order-parameter angle. These fluctuations result in an unusual local symmetry lowering into a continuum of structures on heating. This local symmetry breaking persists into the high-symmetry nonpolar phase, constituting an unconventional type of order-disorder transition, and we pinpoint it as the reason for the anomalous behavior near the phase transition. The hidden disorder revealed in YMnO_{3} by total scattering is expected to find analogies in other materials with structural frustration or characteristic energy barriers of different magnitudes.http://doi.org/10.1103/PhysRevX.9.031001 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sandra H. Skjærvø Quintin N. Meier Mikhail Feygenson Nicola A. Spaldin Simon J. L. Billinge Emil S. Bozin Sverre M. Selbach |
spellingShingle |
Sandra H. Skjærvø Quintin N. Meier Mikhail Feygenson Nicola A. Spaldin Simon J. L. Billinge Emil S. Bozin Sverre M. Selbach Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites Physical Review X |
author_facet |
Sandra H. Skjærvø Quintin N. Meier Mikhail Feygenson Nicola A. Spaldin Simon J. L. Billinge Emil S. Bozin Sverre M. Selbach |
author_sort |
Sandra H. Skjærvø |
title |
Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites |
title_short |
Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites |
title_full |
Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites |
title_fullStr |
Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites |
title_full_unstemmed |
Unconventional Continuous Structural Disorder at the Order-Disorder Phase Transition in the Hexagonal Manganites |
title_sort |
unconventional continuous structural disorder at the order-disorder phase transition in the hexagonal manganites |
publisher |
American Physical Society |
series |
Physical Review X |
issn |
2160-3308 |
publishDate |
2019-07-01 |
description |
The improper ferroelectricity in YMnO_{3} and other related multiferroic hexagonal manganites is known to cause topologically protected ferroelectric domains that give rise to rich and diverse physical phenomena. The local structure and structural coherence across the ferroelectric transition, however, were previously not well understood. Here, we reveal the evolution of the local structure with temperature in YMnO_{3} using neutron total scattering techniques, and we interpret them with the help of first-principles calculations and with a first-principles-based effective Hamiltonian. The results show that, at room temperature, the local and average structures are consistent with the established ferroelectric P6_{3}cm symmetry. On heating, both local and average structural analyses show striking anomalies from about 800 K up to the Curie temperature and signatures of a locally more preserved structure than on average, consistent with increasing fluctuations of the order-parameter angle. These fluctuations result in an unusual local symmetry lowering into a continuum of structures on heating. This local symmetry breaking persists into the high-symmetry nonpolar phase, constituting an unconventional type of order-disorder transition, and we pinpoint it as the reason for the anomalous behavior near the phase transition. The hidden disorder revealed in YMnO_{3} by total scattering is expected to find analogies in other materials with structural frustration or characteristic energy barriers of different magnitudes. |
url |
http://doi.org/10.1103/PhysRevX.9.031001 |
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