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Authordc.contributor.authorAndrade Silva, Ignacio Javier 
Authordc.contributor.authorBortolozzo, Umberto 
Authordc.contributor.authorCastillo Pinto, Camila 
Authordc.contributor.authorClerc Gavilán, Marcel 
Authordc.contributor.authorGonzález Cortés, Gregorio 
Authordc.contributor.authorResidori, S. 
Authordc.contributor.authorWilson, Mario 
Admission datedc.date.accessioned2019-05-31T15:21:50Z
Available datedc.date.available2019-05-31T15:21:50Z
Publication datedc.date.issued2018
Cita de ítemdc.identifier.citationPhilosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Volumen 376, Issue 2135, 2018
Identifierdc.identifier.issn1364503X
Identifierdc.identifier.other10.1098/rsta.2017.0382
Identifierdc.identifier.urihttps://repositorio.uchile.cl/handle/2250/169570
Abstractdc.description.abstractOrder–disorder phase transitions driven by temperature or light in soft matter materials exhibit complex dissipative structures. Here, we investigate the spatio-temporal phenomena induced by light in a dye-doped nematic liquid crystal layer. Experimentally, for planar anchoring of the nematic layer and high enough input power, photoisomerization processes induce a nematic–isotropic phase transition mediated by interface propagation between the two phases. In the case of a twisted nematic layer and for intermediate input power, the light induces a spatially modulated phase, which exhibits stripe patterns. The pattern originates as an instability mediated by interface propagation between the modulated and the homogeneous nematic states. Theoretically, the phase transition, emergence of stripe patterns and front dynamics are described on the basis of a proposed model for the dopant concentration coupled with the nematic order parameter. Numerical simulations show quite a fair agreement with the experimental observations.
Lenguagedc.language.isoen
Publisherdc.publisherRoyal Society Publishing
Sourcedc.sourcePhilosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
Keywordsdc.subjectFront propagation
Keywordsdc.subjectLiquid crystals
Keywordsdc.subjectPhase transition
Títulodc.titleDissipative structures induced by photoisomerization in a dye-doped nematic liquid crystal layer
Document typedc.typeArtículo de revista
dcterms.accessRightsdcterms.accessRightsAcceso a solo metadatos
dcterms.accessRightsdcterms.accessRightsAcceso Abierto
Catalogueruchile.catalogadorjmm
Indexationuchile.indexArtículo de publicación SCOPUS
uchile.cosechauchile.cosechaSI


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