Influence of magnetic fields on structural martensitic transitions

We propose a model which suggests that structural martensitic transitions are related to significant changes in the electronic structure, and are effected by high-magnetic fields. The magnetic field dependence is considered unusual as many influential investigations of martensitic transitions have e...

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Main Authors: Yang, X, Riseborough, P, Modic, K, Fisher, R, Oppeil, C, Finlayson, T, Cooley, J, Smith, J, Goddard, P, Silhanek, A, Lashley, J
Format: Journal article
Language:English
Published: 2010
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author Yang, X
Riseborough, P
Modic, K
Fisher, R
Oppeil, C
Finlayson, T
Cooley, J
Smith, J
Goddard, P
Silhanek, A
Lashley, J
author_facet Yang, X
Riseborough, P
Modic, K
Fisher, R
Oppeil, C
Finlayson, T
Cooley, J
Smith, J
Goddard, P
Silhanek, A
Lashley, J
author_sort Yang, X
collection OXFORD
description We propose a model which suggests that structural martensitic transitions are related to significant changes in the electronic structure, and are effected by high-magnetic fields. The magnetic field dependence is considered unusual as many influential investigations of martensitic transitions have emphasized that the structural transitions are primarily lattice dynamical and are driven by the entropy due to the phonons. We provide a theoretical framework which can be used to describe the effect of high magnetic field on the transition and lattice dynamics in which the field dependence originates from the dielectric constant. The model is compared with some recent experimental results. © 2010 IOP Publishing Ltd.
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spelling oxford-uuid:24d1a36e-3e88-4342-8fa2-86ec4316fced2022-03-26T11:52:12ZInfluence of magnetic fields on structural martensitic transitionsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:24d1a36e-3e88-4342-8fa2-86ec4316fcedEnglishSymplectic Elements at Oxford2010Yang, XRiseborough, PModic, KFisher, ROppeil, CFinlayson, TCooley, JSmith, JGoddard, PSilhanek, ALashley, JWe propose a model which suggests that structural martensitic transitions are related to significant changes in the electronic structure, and are effected by high-magnetic fields. The magnetic field dependence is considered unusual as many influential investigations of martensitic transitions have emphasized that the structural transitions are primarily lattice dynamical and are driven by the entropy due to the phonons. We provide a theoretical framework which can be used to describe the effect of high magnetic field on the transition and lattice dynamics in which the field dependence originates from the dielectric constant. The model is compared with some recent experimental results. © 2010 IOP Publishing Ltd.
spellingShingle Yang, X
Riseborough, P
Modic, K
Fisher, R
Oppeil, C
Finlayson, T
Cooley, J
Smith, J
Goddard, P
Silhanek, A
Lashley, J
Influence of magnetic fields on structural martensitic transitions
title Influence of magnetic fields on structural martensitic transitions
title_full Influence of magnetic fields on structural martensitic transitions
title_fullStr Influence of magnetic fields on structural martensitic transitions
title_full_unstemmed Influence of magnetic fields on structural martensitic transitions
title_short Influence of magnetic fields on structural martensitic transitions
title_sort influence of magnetic fields on structural martensitic transitions
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