Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices

Based on the Landau-Ginzburg theory, the screening charge compensation phenomena for polarization discontinuities at interface in ferroelectric superlattices are investigated. Interface mixing leads to polarization continuity or discontinuity in superlattices. Free charge with equal but of opposite...

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Main Authors: Lim, K.G., Chew, K.H., Wang, D.Y., Ong, L.H., Iwata, M.
Format: Article
Published: EPL Association, European Physical Society 2014
Subjects:
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author Lim, K.G.
Chew, K.H.
Wang, D.Y.
Ong, L.H.
Iwata, M.
author_facet Lim, K.G.
Chew, K.H.
Wang, D.Y.
Ong, L.H.
Iwata, M.
author_sort Lim, K.G.
collection UM
description Based on the Landau-Ginzburg theory, the screening charge compensation phenomena for polarization discontinuities at interface in ferroelectric superlattices are investigated. Interface mixing leads to polarization continuity or discontinuity in superlattices. Free charge with equal but of opposite sign for alternate interface, driven by internal electric field, builds up to counteract the depolarization effect in superlattices. The charge density depends on the degree of interface mixing, and it approaches a saturated value when the mismatch of internal field or polarization at interface vanishes. Using PbTiO3/SrTiO3 (PT/ST) as a model system, the charge compensation phenomena for polarization discontinuities in superlattices is investigated by examining the polarization and internal electric field profiles. Dependence of local polarization and internal field at the interfaces on screening charge density is also examined in detail. Copyright (C) EPLA, 2014
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spelling um.eprints-154992015-12-31T01:04:03Z http://eprints.um.edu.my/15499/ Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices Lim, K.G. Chew, K.H. Wang, D.Y. Ong, L.H. Iwata, M. Q Science (General) Based on the Landau-Ginzburg theory, the screening charge compensation phenomena for polarization discontinuities at interface in ferroelectric superlattices are investigated. Interface mixing leads to polarization continuity or discontinuity in superlattices. Free charge with equal but of opposite sign for alternate interface, driven by internal electric field, builds up to counteract the depolarization effect in superlattices. The charge density depends on the degree of interface mixing, and it approaches a saturated value when the mismatch of internal field or polarization at interface vanishes. Using PbTiO3/SrTiO3 (PT/ST) as a model system, the charge compensation phenomena for polarization discontinuities in superlattices is investigated by examining the polarization and internal electric field profiles. Dependence of local polarization and internal field at the interfaces on screening charge density is also examined in detail. Copyright (C) EPLA, 2014 EPL Association, European Physical Society 2014 Article PeerReviewed Lim, K.G. and Chew, K.H. and Wang, D.Y. and Ong, L.H. and Iwata, M. (2014) Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices. EPL, 108 (6).
spellingShingle Q Science (General)
Lim, K.G.
Chew, K.H.
Wang, D.Y.
Ong, L.H.
Iwata, M.
Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title_full Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title_fullStr Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title_full_unstemmed Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title_short Charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
title_sort charge compensation phenomena for polarization discontinuities in ferroelectric superlattices
topic Q Science (General)
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AT chewkh chargecompensationphenomenaforpolarizationdiscontinuitiesinferroelectricsuperlattices
AT wangdy chargecompensationphenomenaforpolarizationdiscontinuitiesinferroelectricsuperlattices
AT onglh chargecompensationphenomenaforpolarizationdiscontinuitiesinferroelectricsuperlattices
AT iwatam chargecompensationphenomenaforpolarizationdiscontinuitiesinferroelectricsuperlattices