Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.

A new approach is presented for modeling perovskite frameworks with disordered Jahn-Teller (JT) distortions and has been applied to study the elastic response of the LaMnO3 structure to defects in the JT ordering. Surprisingly, antiphase domain boundary defects in the pattern of ordered JT octahedra...

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Asıl Yazarlar: Sartbaeva, A, Wells, SA, Thorpe, M, Bozin, E, Billinge, S
Materyal Türü: Journal article
Dil:English
Baskı/Yayın Bilgisi: 2006
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author Sartbaeva, A
Wells, SA
Thorpe, M
Bozin, E
Billinge, S
author_facet Sartbaeva, A
Wells, SA
Thorpe, M
Bozin, E
Billinge, S
author_sort Sartbaeva, A
collection OXFORD
description A new approach is presented for modeling perovskite frameworks with disordered Jahn-Teller (JT) distortions and has been applied to study the elastic response of the LaMnO3 structure to defects in the JT ordering. Surprisingly, antiphase domain boundary defects in the pattern of ordered JT octahedra, along the [110] and [110] bonding directions, are found to produce 1D stripe patterns rotated 45 degrees along a* directions, similar to stripe structures observed in these systems. Geometric simulation is shown to be an efficient and powerful approach for finding relaxed atomic structures in the presence of disorder in networks of corner-shared JT-distorted octahedra such as the perovskites. Geometric modeling rapidly relaxes large supercells (thousands of octahedra) while preserving the local coordination chemistry, and shows great promise for studying these complex systems.
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spelling oxford-uuid:e3706e6c-e380-4c1c-81ec-8e9f063a1ed82022-03-27T10:09:07ZGeometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:e3706e6c-e380-4c1c-81ec-8e9f063a1ed8EnglishSymplectic Elements at Oxford2006Sartbaeva, AWells, SAThorpe, MBozin, EBillinge, SA new approach is presented for modeling perovskite frameworks with disordered Jahn-Teller (JT) distortions and has been applied to study the elastic response of the LaMnO3 structure to defects in the JT ordering. Surprisingly, antiphase domain boundary defects in the pattern of ordered JT octahedra, along the [110] and [110] bonding directions, are found to produce 1D stripe patterns rotated 45 degrees along a* directions, similar to stripe structures observed in these systems. Geometric simulation is shown to be an efficient and powerful approach for finding relaxed atomic structures in the presence of disorder in networks of corner-shared JT-distorted octahedra such as the perovskites. Geometric modeling rapidly relaxes large supercells (thousands of octahedra) while preserving the local coordination chemistry, and shows great promise for studying these complex systems.
spellingShingle Sartbaeva, A
Wells, SA
Thorpe, M
Bozin, E
Billinge, S
Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title_full Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title_fullStr Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title_full_unstemmed Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title_short Geometric simulation of perovskite frameworks with Jahn-Teller distortions: applications to the cubic manganites.
title_sort geometric simulation of perovskite frameworks with jahn teller distortions applications to the cubic manganites
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AT wellssa geometricsimulationofperovskiteframeworkswithjahntellerdistortionsapplicationstothecubicmanganites
AT thorpem geometricsimulationofperovskiteframeworkswithjahntellerdistortionsapplicationstothecubicmanganites
AT bozine geometricsimulationofperovskiteframeworkswithjahntellerdistortionsapplicationstothecubicmanganites
AT billinges geometricsimulationofperovskiteframeworkswithjahntellerdistortionsapplicationstothecubicmanganites