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Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$

The cubic spinel CdCr$_2$S$_4$ gained recently a vivid interest, given the relevance of relaxor-like dielectric behavior in its paramagnetic phase. By a singular combination of local probe techniques namely Pair Distribution Function and Perturbed Angular Correlation we firmly establish that the Cr...

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Autores principales: Oliveira, Gonçalo Nuno, Pereira, André Miguel, Lopes, Armandina Lima, Amaral, João Sequeira, dos Santos, António, Ren, Yan, Mendonca, Tania Manuela, Sousa, Célia Tavares, Amaral, Vitor Sequeira, Correia, João Guilherme, Araújo, João Pedro
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevB.86.224418
http://cds.cern.ch/record/1641946
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author Oliveira, Gonçalo Nuno
Pereira, André Miguel
Lopes, Armandina Lima
Amaral, João Sequeira
dos Santos, António
Ren, Yan
Mendonca, Tania Manuela
Sousa, Célia Tavares
Amaral, Vitor Sequeira
Correia, João Guilherme
Araújo, João Pedro
author_facet Oliveira, Gonçalo Nuno
Pereira, André Miguel
Lopes, Armandina Lima
Amaral, João Sequeira
dos Santos, António
Ren, Yan
Mendonca, Tania Manuela
Sousa, Célia Tavares
Amaral, Vitor Sequeira
Correia, João Guilherme
Araújo, João Pedro
author_sort Oliveira, Gonçalo Nuno
collection CERN
description The cubic spinel CdCr$_2$S$_4$ gained recently a vivid interest, given the relevance of relaxor-like dielectric behavior in its paramagnetic phase. By a singular combination of local probe techniques namely Pair Distribution Function and Perturbed Angular Correlation we firmly establish that the Cr ion plays the central key role on this exotic phenomenon, namely through a dynamic off-centering displacement of its coordination sphere. We further show that this off centering of the magnetic Cr-ion gives rise to a peculiar entanglement between the polar and magnetic degrees of freedom, stabilizing, in the paramagnetic phase, short range magnetic clusters, clearly seen in ultra-low field susceptibility measurements. Moreover, the Landau theory is here used to demonstrate that a linear coupling between the magnetic and polar order parameters is sufficient to justify the appearance of magnetic cluster in paramagnetic phase of this compound. These results open insights on the hotly debated magnetic and polar interaction, setting a step forward in the reinterpretation of the coupling of different physical degrees of freedom.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-16419462019-09-30T06:29:59Zdoi:10.1103/PhysRevB.86.224418http://cds.cern.ch/record/1641946engOliveira, Gonçalo NunoPereira, André MiguelLopes, Armandina LimaAmaral, João Sequeirados Santos, AntónioRen, YanMendonca, Tania ManuelaSousa, Célia TavaresAmaral, Vitor SequeiraCorreia, João GuilhermeAraújo, João PedroDynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$Condensed MatterThe cubic spinel CdCr$_2$S$_4$ gained recently a vivid interest, given the relevance of relaxor-like dielectric behavior in its paramagnetic phase. By a singular combination of local probe techniques namely Pair Distribution Function and Perturbed Angular Correlation we firmly establish that the Cr ion plays the central key role on this exotic phenomenon, namely through a dynamic off-centering displacement of its coordination sphere. We further show that this off centering of the magnetic Cr-ion gives rise to a peculiar entanglement between the polar and magnetic degrees of freedom, stabilizing, in the paramagnetic phase, short range magnetic clusters, clearly seen in ultra-low field susceptibility measurements. Moreover, the Landau theory is here used to demonstrate that a linear coupling between the magnetic and polar order parameters is sufficient to justify the appearance of magnetic cluster in paramagnetic phase of this compound. These results open insights on the hotly debated magnetic and polar interaction, setting a step forward in the reinterpretation of the coupling of different physical degrees of freedom.CERN-OPEN-2014-019oai:cds.cern.ch:16419462014-01-09
spellingShingle Condensed Matter
Oliveira, Gonçalo Nuno
Pereira, André Miguel
Lopes, Armandina Lima
Amaral, João Sequeira
dos Santos, António
Ren, Yan
Mendonca, Tania Manuela
Sousa, Célia Tavares
Amaral, Vitor Sequeira
Correia, João Guilherme
Araújo, João Pedro
Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title_full Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title_fullStr Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title_full_unstemmed Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title_short Dynamic off-centering of Cr$^{3+}$ ions and short-range magneto-electric clusters in in CdCr$_2$S$_4$
title_sort dynamic off-centering of cr$^{3+}$ ions and short-range magneto-electric clusters in in cdcr$_2$s$_4$
topic Condensed Matter
url https://dx.doi.org/10.1103/PhysRevB.86.224418
http://cds.cern.ch/record/1641946
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