Low voltage FLC for fast active matrix displays

The process of FLC director reorientation in alternating electric field is considered for the case when interaction of FLC molecules with the substrates results in partial unwinding the helix structure and motion of domain walls. The hysteresis-free electrooptical response as fast as 50…70 μs was...

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Бібліографічні деталі
Дата:2010
Автори: Andreev, A., Andreeva, T., Kompanets, I.
Формат: Стаття
Мова:English
Опубліковано: Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України 2010
Назва видання:Semiconductor Physics Quantum Electronics & Optoelectronics
Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/118407
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Low voltage FLC for fast active matrix displays / A. Andreev, T. Andreeva, I. Kompanets // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2010. — Т. 13, № 3. — С. 290-293. — Бібліогр.: 3 назв. — англ.

Репозитарії

Digital Library of Periodicals of National Academy of Sciences of Ukraine
id irk-123456789-118407
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spelling irk-123456789-1184072017-05-31T03:07:22Z Low voltage FLC for fast active matrix displays Andreev, A. Andreeva, T. Kompanets, I. The process of FLC director reorientation in alternating electric field is considered for the case when interaction of FLC molecules with the substrates results in partial unwinding the helix structure and motion of domain walls. The hysteresis-free electrooptical response as fast as 50…70 μs was achieved in the FLC cell of 1.3-μm thickness in the electric field 1 V/μm. This result is very important for the practical use of FLC in fast active matrix displays. 2010 Article Low voltage FLC for fast active matrix displays / A. Andreev, T. Andreeva, I. Kompanets // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2010. — Т. 13, № 3. — С. 290-293. — Бібліогр.: 3 назв. — англ. 1560-8034 PACS 61.30.Gd http://dspace.nbuv.gov.ua/handle/123456789/118407 en Semiconductor Physics Quantum Electronics & Optoelectronics Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
description The process of FLC director reorientation in alternating electric field is considered for the case when interaction of FLC molecules with the substrates results in partial unwinding the helix structure and motion of domain walls. The hysteresis-free electrooptical response as fast as 50…70 μs was achieved in the FLC cell of 1.3-μm thickness in the electric field 1 V/μm. This result is very important for the practical use of FLC in fast active matrix displays.
format Article
author Andreev, A.
Andreeva, T.
Kompanets, I.
spellingShingle Andreev, A.
Andreeva, T.
Kompanets, I.
Low voltage FLC for fast active matrix displays
Semiconductor Physics Quantum Electronics & Optoelectronics
author_facet Andreev, A.
Andreeva, T.
Kompanets, I.
author_sort Andreev, A.
title Low voltage FLC for fast active matrix displays
title_short Low voltage FLC for fast active matrix displays
title_full Low voltage FLC for fast active matrix displays
title_fullStr Low voltage FLC for fast active matrix displays
title_full_unstemmed Low voltage FLC for fast active matrix displays
title_sort low voltage flc for fast active matrix displays
publisher Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України
publishDate 2010
url http://dspace.nbuv.gov.ua/handle/123456789/118407
citation_txt Low voltage FLC for fast active matrix displays / A. Andreev, T. Andreeva, I. Kompanets // Semiconductor Physics Quantum Electronics & Optoelectronics. — 2010. — Т. 13, № 3. — С. 290-293. — Бібліогр.: 3 назв. — англ.
series Semiconductor Physics Quantum Electronics & Optoelectronics
work_keys_str_mv AT andreeva lowvoltageflcforfastactivematrixdisplays
AT andreevat lowvoltageflcforfastactivematrixdisplays
AT kompanetsi lowvoltageflcforfastactivematrixdisplays
first_indexed 2023-10-18T20:32:04Z
last_indexed 2023-10-18T20:32:04Z
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