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Combined electric and photocontrol of selective light reflection at an oblique helicoidal cholesteric liquid crystal doped with azoxybenzene derivative

Authors :
Oleg D. Lavrentovich
Corrie T. Imrie
Hari Krishna Bisoyi
Daniel A. Paterson
Kamal Thapa
Olena S. Iadlovska
John Storey
Quan Li
Sergij V. Shiyanovskii
Source :
Physical Review E. 104
Publication Year :
2021
Publisher :
American Physical Society (APS), 2021.

Abstract

An oblique helicoidal cholesteric liquid crystal ${\mathrm{Ch}}_{\mathrm{OH}}$ represents a unique optical material with a single-harmonic periodic modulation of the refractive index and a pitch that can be tuned by an electric or magnetic field in a broad range from submicrometers to micrometers. In this work, we demonstrate that the oblique helicoidal cholesteric doped with azoxybenzene molecules can be tuned by both the electric field and light irradiation. The tuning mechanism is explained by the kinetics of trans-cis photoisomerization of the azoxybenzene molecules. At a fixed voltage, UV irradiation causes a redshift of the reflection peak by more than 200 nm. The effect is caused by an increase of the bend elastic constant of ${\mathrm{Ch}}_{\mathrm{OH}}$ under irradiation. The demonstrated principle has the potential for applications such as smart windows, sensors, tunable lasers, and filters.

Details

ISSN :
24700053 and 24700045
Volume :
104
Database :
OpenAIRE
Journal :
Physical Review E
Accession number :
edsair.doi.dedup.....59462c38ee2c2571e58bf714b69d5480
Full Text :
https://doi.org/10.1103/physreve.104.044702