In this paper, we describe in detail the electrical photonic band gap (PBG) tuning properties of a chiral nematic liquid crystal (N*LCs) using electrically active ferroelectric liquid crystals (FLCs) to generate surface mediated switching. The tuning of the PBG occurs as a result of a contraction of the helix which is induced passively by the in-plane rotations of the N*LC molecules at the FLC/N*LC interface. We provide detail on the preparation of the samples and discuss how the tuning range is altered when the number of switching surfaces increases from just one surface to both top and bottom surfaces. The effect is found to be completely reversible and there is no apparent change in the quality of the structure during tuning. It is obser...
Electro-optic switching in short-pitch polymer stabilized chiral nematic liquid crystals was studied...
The self-organization of the helical structure of chiral nematic liquid crystals combined with their...
The flexo-electro-optics effect in chrial nematic liquid crystals is developed towards new photonics...
In this letter, the authors demonstrate photonic band gap (PBG) tuning in chiral nematic liquid crys...
Chiral liquid crystals (CLCs) are known to self-organize into helical structures with periodicities ...
In this paper, we demonstrate electric field-induced wavelength tuning of the entire photonic b...
This thesis studies several electro-optic effects of chiral nematic liquid crystals (N*LCs) for appl...
We developed new optical switches based on nematic and ferroelectric liquid crystal (LC) cells for p...
We have carried out a spectroscopic study on a prototype ferroelectric nematic material (RM7343) dop...
Using in-plane electric fields, the electrical induction of the uniform lying helix (ULH) alignment ...
With the advent of global telecommunications networks and the Internet, the development of portable ...
Self-assembled periodic structures based upon chiralliquid crystalline materials have significant po...
The flexoelectro-optic effect describes the rotation of the optic axis of a short-pitch chiral nemat...
Electrically controlled color tuning of the photonic bandgap and electrically induced multiple photo...
Chiral nematic liquid crystals (CLCs) can spontaneously arrange into helical structures with periodi...
Electro-optic switching in short-pitch polymer stabilized chiral nematic liquid crystals was studied...
The self-organization of the helical structure of chiral nematic liquid crystals combined with their...
The flexo-electro-optics effect in chrial nematic liquid crystals is developed towards new photonics...
In this letter, the authors demonstrate photonic band gap (PBG) tuning in chiral nematic liquid crys...
Chiral liquid crystals (CLCs) are known to self-organize into helical structures with periodicities ...
In this paper, we demonstrate electric field-induced wavelength tuning of the entire photonic b...
This thesis studies several electro-optic effects of chiral nematic liquid crystals (N*LCs) for appl...
We developed new optical switches based on nematic and ferroelectric liquid crystal (LC) cells for p...
We have carried out a spectroscopic study on a prototype ferroelectric nematic material (RM7343) dop...
Using in-plane electric fields, the electrical induction of the uniform lying helix (ULH) alignment ...
With the advent of global telecommunications networks and the Internet, the development of portable ...
Self-assembled periodic structures based upon chiralliquid crystalline materials have significant po...
The flexoelectro-optic effect describes the rotation of the optic axis of a short-pitch chiral nemat...
Electrically controlled color tuning of the photonic bandgap and electrically induced multiple photo...
Chiral nematic liquid crystals (CLCs) can spontaneously arrange into helical structures with periodi...
Electro-optic switching in short-pitch polymer stabilized chiral nematic liquid crystals was studied...
The self-organization of the helical structure of chiral nematic liquid crystals combined with their...
The flexo-electro-optics effect in chrial nematic liquid crystals is developed towards new photonics...