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Photoaligned Liquid Crystalline Structures for Photonic Applications
by
Chausov, Denis
, Hegde, Gurumurthy
, Kudreyko, Aleksey
, Chigrinov, Vladimir
in
Crystals
/ Electric fields
/ Energy
/ Equipment and supplies
/ Fiber optics
/ Laboratories
/ lenses
/ Light
/ Liquid crystals
/ Materials research
/ Optical properties
/ Optics
/ photoalignment
/ Photonic crystals
/ Photonics
/ photopatterning
/ Structure
/ Technology application
/ waveguides
2023
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Photoaligned Liquid Crystalline Structures for Photonic Applications
by
Chausov, Denis
, Hegde, Gurumurthy
, Kudreyko, Aleksey
, Chigrinov, Vladimir
in
Crystals
/ Electric fields
/ Energy
/ Equipment and supplies
/ Fiber optics
/ Laboratories
/ lenses
/ Light
/ Liquid crystals
/ Materials research
/ Optical properties
/ Optics
/ photoalignment
/ Photonic crystals
/ Photonics
/ photopatterning
/ Structure
/ Technology application
/ waveguides
2023
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Do you wish to request the book?
Photoaligned Liquid Crystalline Structures for Photonic Applications
by
Chausov, Denis
, Hegde, Gurumurthy
, Kudreyko, Aleksey
, Chigrinov, Vladimir
in
Crystals
/ Electric fields
/ Energy
/ Equipment and supplies
/ Fiber optics
/ Laboratories
/ lenses
/ Light
/ Liquid crystals
/ Materials research
/ Optical properties
/ Optics
/ photoalignment
/ Photonic crystals
/ Photonics
/ photopatterning
/ Structure
/ Technology application
/ waveguides
2023
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Photoaligned Liquid Crystalline Structures for Photonic Applications
Journal Article
Photoaligned Liquid Crystalline Structures for Photonic Applications
2023
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Overview
With the advancement of information display technologies, research on liquid crystals is undergoing a tremendous shift to photonic devices. For example, devices and configurations based on liquid crystal materials are being developed for various applications, such as spectroscopy, imaging, and fiber optics. One of the problems behind the development of photonic devices lies in the preparation of patterned surfaces that can provide high resolution. Among all liquid crystal alignment techniques, photoalignment represents a promising non-contact method for the fabrication of patterned surfaces. In this review, we discuss the original research findings on electro-optic effects, which were mainly achieved at the Department of Electronic and Computer Engineering of the Hong Kong University of Science and Technology and the collaborating research laboratories.
Publisher
MDPI AG
Subject
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