40.3: Effect of Birefringent Alignment Layer on Azimuthal Anchoring Energy Measurement
Birefringent alignment layer contributes to the optics of the liquid crystal cell, which is significant for optical method of azimuthal anchoring energy measurement. We obtained analytical equation to compute the corrected value of liquid crystal twist angle subject to alignment layer retardation. T...
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Published in | SID International Symposium Digest of technical papers Vol. 52; no. S2; pp. 497 - 499 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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01.08.2021
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Abstract | Birefringent alignment layer contributes to the optics of the liquid crystal cell, which is significant for optical method of azimuthal anchoring energy measurement. We obtained analytical equation to compute the corrected value of liquid crystal twist angle subject to alignment layer retardation. The data on azimuthal anchoring energy measurements of AtA‐2 and AtA‐0042 azo‐dye photoalignment materials are obtained: above >10−4J/m2 within the wide range of exposure doses 0.04 – 5.12 J/cm2. |
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AbstractList | Birefringent alignment layer contributes to the optics of the liquid crystal cell, which is significant for optical method of azimuthal anchoring energy measurement. We obtained analytical equation to compute the corrected value of liquid crystal twist angle subject to alignment layer retardation. The data on azimuthal anchoring energy measurements of AtA‐2 and AtA‐0042 azo‐dye photoalignment materials are obtained: above >10
−4
J/m
2
within the wide range of exposure doses 0.04 – 5.12 J/cm
2
. Birefringent alignment layer contributes to the optics of the liquid crystal cell, which is significant for optical method of azimuthal anchoring energy measurement. We obtained analytical equation to compute the corrected value of liquid crystal twist angle subject to alignment layer retardation. The data on azimuthal anchoring energy measurements of AtA‐2 and AtA‐0042 azo‐dye photoalignment materials are obtained: above >10−4J/m2 within the wide range of exposure doses 0.04 – 5.12 J/cm2. |
Author | Muravsky, Alexander Murauski, Anatoli |
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CitedBy_id | crossref_primary_10_33581_2520_2243_2022_3_10_25 crossref_primary_10_1016_j_optcom_2022_128661 crossref_primary_10_3389_frsfm_2024_1382925 crossref_primary_10_2139_ssrn_4049732 |
Cites_doi | 10.1889/1.1833023 10.1080/14645180600617908 10.1364/AO.392068 |
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References | 2020; 59 2021; 29 2000; 31 2005; 14 e_1_2_1_3_1 Muravsky A.A. (e_1_2_1_5_1) 2021; 29 e_1_2_1_4_1 e_1_2_1_2_1 |
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Snippet | Birefringent alignment layer contributes to the optics of the liquid crystal cell, which is significant for optical method of azimuthal anchoring energy... |
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SubjectTerms | Alignment Azimuthal anchoring energy Energy measurement liquid crystal alignment Liquid crystals photoalignment retardation |
Title | 40.3: Effect of Birefringent Alignment Layer on Azimuthal Anchoring Energy Measurement |
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