Effect of flexoelectricity and order electricity on defect cores in nematic droplets

Macroscopic polarization, induced in a strongly deformed nematic director field, is shown to strongly affect the stability of defect structures. We present a numerical study which addresses the role of flexoelectricity and order electricity in confined nematic liquid crystals, more specifically in n...

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Auteurs principaux: Porenta, T, Ravnik, M, Zumer, S
Format: Journal article
Langue:English
Publié: 2011
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author Porenta, T
Ravnik, M
Zumer, S
author_facet Porenta, T
Ravnik, M
Zumer, S
author_sort Porenta, T
collection OXFORD
description Macroscopic polarization, induced in a strongly deformed nematic director field, is shown to strongly affect the stability of defect structures. We present a numerical study which addresses the role of flexoelectricity and order electricity in confined nematic liquid crystals, more specifically in nematic droplets with planar and homeotropic surface anchoring. Electrostatic potential induced by flexo- and order electricity are calculated in the droplets taking into the account full anisotropy of the nematic director profile. Potentials as high as 1 V are found in 200 nm droplets with flexoelectric constant e = 40 pC m-1. Spatial profiles of contributions to the total free energy are calculated to identify flexo- and order elasticity relevant regions. For different flexoelectric coupling strengths and different anchoring strengths, changes in the core of the defects are examined. Their stability is discussed. Finally, flexo- and order electricity driven transitions between point defect, ring defect and axial structure are demonstrated in homeotropic droplets. © 2011 The Royal Society of Chemistry.
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spelling oxford-uuid:50e2959a-a0b8-4ca7-b50b-0de0666886202022-03-26T16:16:14ZEffect of flexoelectricity and order electricity on defect cores in nematic dropletsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:50e2959a-a0b8-4ca7-b50b-0de066688620EnglishSymplectic Elements at Oxford2011Porenta, TRavnik, MZumer, SMacroscopic polarization, induced in a strongly deformed nematic director field, is shown to strongly affect the stability of defect structures. We present a numerical study which addresses the role of flexoelectricity and order electricity in confined nematic liquid crystals, more specifically in nematic droplets with planar and homeotropic surface anchoring. Electrostatic potential induced by flexo- and order electricity are calculated in the droplets taking into the account full anisotropy of the nematic director profile. Potentials as high as 1 V are found in 200 nm droplets with flexoelectric constant e = 40 pC m-1. Spatial profiles of contributions to the total free energy are calculated to identify flexo- and order elasticity relevant regions. For different flexoelectric coupling strengths and different anchoring strengths, changes in the core of the defects are examined. Their stability is discussed. Finally, flexo- and order electricity driven transitions between point defect, ring defect and axial structure are demonstrated in homeotropic droplets. © 2011 The Royal Society of Chemistry.
spellingShingle Porenta, T
Ravnik, M
Zumer, S
Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title_full Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title_fullStr Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title_full_unstemmed Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title_short Effect of flexoelectricity and order electricity on defect cores in nematic droplets
title_sort effect of flexoelectricity and order electricity on defect cores in nematic droplets
work_keys_str_mv AT porentat effectofflexoelectricityandorderelectricityondefectcoresinnematicdroplets
AT ravnikm effectofflexoelectricityandorderelectricityondefectcoresinnematicdroplets
AT zumers effectofflexoelectricityandorderelectricityondefectcoresinnematicdroplets