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Magnetoelectric effect in an XY-like spin glass system Ni{x}Mn{1-x}TiO{3}.

Magnetoelectric (ME) properties were investigated for an XY-like spin glass (SG) system, Ni{x}Mn{1-x}TiO{3} with an ilmenite structure. The ME effect is usually observed in systems with peculiar couplings between a crystal lattice and a magnetic order. Nonetheless, we found an antisymmetric ME effec... Full description

Journal Title: Physical review letters February 3, 2012, Vol.108(5), p.057203
Main Author: Yamaguchi, Y
Other Authors: Nakano, T , Nozue, Y , Kimura, T
Format: Electronic Article Electronic Article
Language: English
ID: E-ISSN: 1079-7114
Link: http://search.proquest.com/docview/927689941/?pq-origsite=primo
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title: Magnetoelectric effect in an XY-like spin glass system Ni{x}Mn{1-x}TiO{3}.
format: Article
creator:
  • Yamaguchi, Y
  • Nakano, T
  • Nozue, Y
  • Kimura, T
ispartof: Physical review letters, February 3, 2012, Vol.108(5), p.057203
description: Magnetoelectric (ME) properties were investigated for an XY-like spin glass (SG) system, Ni{x}Mn{1-x}TiO{3} with an ilmenite structure. The ME effect is usually observed in systems with peculiar couplings between a crystal lattice and a magnetic order. Nonetheless, we found an antisymmetric ME effect with nonzero ME tensor elements below T{ME}=8-10  K in samples showing SG transitions. At T{ME}, no specific heat anomaly was observed, suggesting the absence of long-range magnetic order. We discuss the origin of the ME effect in the XY-like SG system in terms of an alignment of toroidal moments.
language: eng
source:
identifier: E-ISSN: 1079-7114
fulltext: no_fulltext
issn:
  • 10797114
  • 1079-7114
url: Link


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titleMagnetoelectric effect in an XY-like spin glass system Ni{x}Mn{1-x}TiO{3}.
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descriptionMagnetoelectric (ME) properties were investigated for an XY-like spin glass (SG) system, Ni{x}Mn{1-x}TiO{3} with an ilmenite structure. The ME effect is usually observed in systems with peculiar couplings between a crystal lattice and a magnetic order. Nonetheless, we found an antisymmetric ME effect with nonzero ME tensor elements below T{ME}=8-10  K in samples showing SG transitions. At T{ME}, no specific heat anomaly was observed, suggesting the absence of long-range magnetic order. We discuss the origin of the ME effect in the XY-like SG system in terms of an alignment of toroidal moments.
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