Author | Parshin, A. M. | |
Author | Shabanov, V. F. | |
Author | Zyryanov, V. Y. | |
Accessioned Date | 2017-06-16T10:24:45Z | |
Available Date | 2017-06-16T10:24:45Z | |
Issued Date | 2016-09 | |
Bibliographic Citation | Parshin, A. M. Light transmission of liquid crystal domains formed by polycarbonate surface [Текст] / A. M. Parshin, V. F. Shabanov, V. Y. Zyryanov // Optical Materials Express. — 2016. — Т. 6 (№ 9). — С. 2841-2846 | |
ISSN | 21593930 | |
URI (for links/citations) | https://elib.sfu-kras.ru/handle/2311/32983 | |
Description | Текст статьи не публикуется в открытом доступе в соответствии с политикой журнала. | |
Abstract | We investigate the optical transmission of a monochromatic laser beam passing
through an individual domain of a nematic liquid crystal formed by the polycarbonate surface.
The domain has the radial orientation structure with a disclination line on the polymer surface,
which gradually transforms to “pseudoplanar” alignment at the coherence distance ξ from the
surface. The dependence of the optical transmittance on an electric field applied to the domain
are different at various light polarization directions relative to the disclination lines and, in the
absence of an analyzer, are accompanied by interference oscillations. To explain the results
obtained, a domain is considered to be a gradient lens with the refractive index variable in the
plane perpendicular to the laser beam and the resulting deflecting effect that was collected at
the beam path through the liquid crystal layer. | |
Link to Another Site | https://www.osapublishing.org/search.cfm?q=&j=ome&v=6&i=&p=2841 | |
Subject | Liquid crystals | |
Subject | Birefringence | |
Subject | Interference | |
Title | Light transmission of liquid crystal domains formed by polycarbonate surface | |
Type | Journal Article | |
Type | Published Journal Article | |
Pages | 2841-2846 | |
GRNTI | 29.17.25 | |
Update Date | 2017-06-16T10:24:45Z | |
DOI | 10.1364/OME.6.002841 | |
Institute | Политехнический институт | |
Department | Кафедра электротехнологии и электротехники | |
Journal Name | Optical Materials Express | |
Journal Quartile in Scopus | Q1 | |
Journal Quartile in Web of Science | Q1 | |