Optically rewritable dynamic phase grating based on blue-phase-templated azobenzene liquid crystal

Hung-Chang Jau, Yi-Ting Lin, Cheng-Chang Li, Chun-Wei Chen, Tsung-Hsien Lin

Research output: Contribution to journalArticlepeer-review

18 Citations (SciVal)

Abstract

We propose an optically rewritable dynamic phase grating based on polymer-templated azo liquid crystal in a blue-phase structure. The grating consists of alternating blue-phase and light-induced isotropic-phase regions, patterned by ultraviolet illumination. In the field-off state, the grating is hidden (showing no diffraction), due to index matching between the two phases. An index change is induced in the blue-phase regions when an external voltage is applied, while the refractive index of the isotropic-phase regions remains the same. The resulting periodic index modulation causes the grating to diffract light. The diffraction efficiency is independent of incident polarization, and the electro-optic response is in the sub-millisecond scale. Enabled by the reversible photoisomerism of the azobenzene, we demonstrate optical-patterning, -erasure, and re-patterning of a single liquid-crystal cell into different grating geometries.

Original languageEnglish
Pages (from-to)10580-10585
JournalOptics Express
Volume27
Issue number8
Early online date1 Apr 2019
DOIs
Publication statusPublished - 15 Apr 2019

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