Polymer-stabilized blue phase liquid crystal displays based on the Kerr effect are emerging due to their submillisecond response time, wide view and simple fabrication process. However, the conventional in-plane switching device exhibits a relatively high operating voltage because the electric fields are restricted in the vicinity of the electrode surface. To overcome this technical barrier, we propose a partitioned wall-shaped electrode configuration so that the induced birefringence is uniform between electrodes throughout the entire cell gap. Consequently, the operating voltage is reduced by similar to 2.8x with two transistors. The responsible physical mechanisms are explained
A low voltage ( \u3c 10 V) and high transmittance (similar to 85.6%) polymer-stabilized blue-phase l...
We demonstrated a low voltage and high contrast polymer-stabilized blue phase liquid crystal (BPLC) ...
Abstract-The electro-optic properties of Kerr effect based liquid crystal display (LCD) with zigzag ...
Polymer-stabilized blue phase liquid crystal displays based on the Kerr effect are emerging due to t...
We propose a new electrode configuration, called diamond-shape in-plane switching, to lower the oper...
Liquid crystal technologies have been used in our daily life. In addition to displays such as LCD TV...
Electrode dimension effects on the electro-optic properties of a polymer-stabilized blue-phase liqui...
Liquid crystal displays based on the Kerr effect are emerging because of their attractive features, ...
Liquid crystal displays based on the Kerr effect are emerging because of their attractive features, ...
The device physics and electro-optical properties of emerging liquid crystal displays (LCDs) based o...
Electrode dimension effects on the electro-optic properties of a polymer-stabilized blue-phase liqui...
The device physics and electro-optical properties of emerging liquid crystal displays (LCDs) based o...
We propose a numerical model based on Kerr effect for simulating the electro-optics of polymer-stabi...
We demonstrated a low voltage polymer-stabilized blue phase liquid crystal (BPLC) by red-shifting th...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
A low voltage ( \u3c 10 V) and high transmittance (similar to 85.6%) polymer-stabilized blue-phase l...
We demonstrated a low voltage and high contrast polymer-stabilized blue phase liquid crystal (BPLC) ...
Abstract-The electro-optic properties of Kerr effect based liquid crystal display (LCD) with zigzag ...
Polymer-stabilized blue phase liquid crystal displays based on the Kerr effect are emerging due to t...
We propose a new electrode configuration, called diamond-shape in-plane switching, to lower the oper...
Liquid crystal technologies have been used in our daily life. In addition to displays such as LCD TV...
Electrode dimension effects on the electro-optic properties of a polymer-stabilized blue-phase liqui...
Liquid crystal displays based on the Kerr effect are emerging because of their attractive features, ...
Liquid crystal displays based on the Kerr effect are emerging because of their attractive features, ...
The device physics and electro-optical properties of emerging liquid crystal displays (LCDs) based o...
Electrode dimension effects on the electro-optic properties of a polymer-stabilized blue-phase liqui...
The device physics and electro-optical properties of emerging liquid crystal displays (LCDs) based o...
We propose a numerical model based on Kerr effect for simulating the electro-optics of polymer-stabi...
We demonstrated a low voltage polymer-stabilized blue phase liquid crystal (BPLC) by red-shifting th...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
A low voltage ( \u3c 10 V) and high transmittance (similar to 85.6%) polymer-stabilized blue-phase l...
We demonstrated a low voltage and high contrast polymer-stabilized blue phase liquid crystal (BPLC) ...
Abstract-The electro-optic properties of Kerr effect based liquid crystal display (LCD) with zigzag ...