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Light-Driven Fabrication of a Chiral Photonic Lattice of the Helical Nanofilament Liquid Crystal Phase

Autor
Wolska, Joanna
Yoon, Dong Ki
Choi, Yun-Seok
Seo, Min-Kyo
Górecka, Ewa
Pociecha, Damian
Han, Moon Jong
Lee, Jongmin
Park, Wongi
Data publikacji
2022
Abstrakt (EN)

A photonic lattice is an efficient platform for optically exploring quantum phenomena. However, its fabrication requires high costs and complex procedures when conventional materials, such as silicon or metals, are used. Here, we demonstrate a simple and cost-effective fabrication method for a reconfigurable chiral photonic lattice of the helical nanofilament (HNF) liquid crystal (LC) phase and diffraction grating showing wavelength-dependent diffraction with a rotated polarization state. Furthermore, the UV-exposed areas of the HNF film having chiral characteristics act as optical building blocks that induce resonant intensity modulation in the reflectance and transmittance modes and the optical rotation of the linear polarization. Our photonic lattice of the HNF can be an efficient platform for a chirality-embedded photonic lattice at a low cos

Słowa kluczowe EN
chiral liquid crystals
diffraction grating
optical rotation
photonic crystal
photonic lattice
Dyscyplina PBN
nauki chemiczne
Czasopismo
ACS Applied Materials & Interfaces
Tom
14
Zeszyt
3
Strony od-do
4409-4416
ISSN
1944-8244
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