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CdEr2Se4: A new erbium spin ice system in a spinel structure
Authors
Dalmas De Réotier P.
Ghigna P.
+6 more
Lago J.
Malkin B.
Rodriguez Fernandez J.
Rojo T.
Yaouanc A.
Živković I.
Publication date
1 January 2010
Publisher
Abstract
Here we present a detailed study of the spinel CdEr2Se4 and show it to be a new instance of spin ice, the first one in an erbium material and the first one in a spinel. Definitive experimental evidence comes from the temperature dependence of the magnetic entropy, which shows an excellent agreement with the predicted behavior for a spin ice state. Crystal field calculations demonstrate that the change in the local environment from that of the titanates completely alters the rare-earth anisotropy giving rise, in the case of Er3+, to the required Ising anisotropy, when Er2Ti2O7 behaves as an XY antiferromagnet. This finding opens up the possibility of new exotic ground states within the CdR2Se4 and CdR2Se4 families. © 2010 The American Physical Society
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Kazan Federal University Digital Repository
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oai:dspace.kpfu.ru:net/101273
Last time updated on 07/05/2019
Kazan Federal University Digital Repository
See this paper in CORE
Go to the repository landing page
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oai:dspace.kpfu.ru:net/141074
Last time updated on 07/05/2019