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Magneto-elastic coupling and competing entropy changes in substituted CoMnSi metamagnets

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arxiv 1208.3176 v4 pith:OLWEDVZN submitted 2012-08-15 cond-mat.str-el cond-mat.mtrl-sci

Magneto-elastic coupling and competing entropy changes in substituted CoMnSi metamagnets

classification cond-mat.str-el cond-mat.mtrl-sci
keywords entropychangeelectronicstatescouplingdensitymagneto-elasticaccurate
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We use neutron diffraction, magnetometry and low temperature heat capacity to probe giant magneto-elastic coupling in CoMnSi-based antiferromagnets and to establish the origin of the entropy change that occurs at the metamagnetic transition in such compounds. We find a large difference between the electronic density of states of the antiferromagnetic and high magnetisation states. The magnetic field-induced entropy change is composed of this contribution and a significant counteracting lattice component, deduced from the presence of negative magnetostriction. In calculating the electronic entropy change, we note the importance of using an accurate model of the electronic density of states, which here varies rapidly close to the Fermi energy.

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