Показать сокращенную информацию
Hybrid anchoring for a color-reflective dual-frequency cholesteric liquid crystal device switched by low voltages
Автор | Hsiao, Yu-Cheng | |
Автор | Timofeev, Ivan V. | |
Автор | Zyryanov, Victor Ya. | |
Автор | Lee, Wei | |
Дата внесения | 2016-11-11T08:53:53Z | |
Дата, когда ресурс стал доступен | 2016-11-11T08:53:53Z | |
Дата публикации | 2015-11 | |
Библиографическое описание | Hsiao, Yu-Cheng. Hybrid anchoring for a color-reflective dual-frequency cholesteric liquid crystal device switched by low voltages [Текст] / Yu-Cheng Hsiao, Ivan V. Timofeev, Victor Ya. Zyryanov, Wei Lee // Optical Materials Express. — 2015. — Т. 5 (№ 11). — С. 2715-2720 | |
ISSN | 21593930 | |
URI (для ссылок/цитирований) | https://elib.sfu-kras.ru/handle/2311/28022 | |
Аннотация | Cholesteric liquid crystal (CLC) materials used in electro-optical (EO) devices are characterized by high operating voltage and slow response speed, which hinders their further development in display applications. Dual-frequency CLCs (DFCLCs) can solve the problem of slow bistable transition, but the operating voltage is still high, especially in color-reflective DFCLC cells. Here we report a simple approach to lowering the switching voltage as well as to shortening the response time. This technique adopts hybrid surface treatment to modulate the structural arrangement of CLC molecules. Both planar- and vertical-alignment layers are employed and coated on one and the other substrates separately to improve the electro-optical properties of DFCLCs. We show that the threshold voltage for switching can be decreased to as low as 5 V and the shortest response time is measured to be 0.8 ms, which renders CLC EO devices including displays more practical for commercial purpose. | |
Ссылка на другой сайт | https://www.osapublishing.org/abstract.cfm?URI=ome-5-11-2715 | |
Название | Hybrid anchoring for a color-reflective dual-frequency cholesteric liquid crystal device switched by low voltages | |
Тип | Journal Article | |
Тип | Journal Article Preprint | |
Страницы | 2715-2720 | |
ГРНТИ | 29.31.27 | |
Дата обновления | 2016-11-11T08:53:53Z | |
DOI | 10.1364/OME.5.002715 | |
Подразделение | Научно-исследовательская часть | |
Журнал | Optical Materials Express | |
Квартиль журнала в Scopus | Q1 | |
Квартиль журнала в Web of Science | Q1 |