A low voltage ( \u3c 10 V) and high transmittance (similar to 85.6%) polymer-stabilized blue-phase liquid crystal (BPLC) display is proposed. The periodic corrugated electrodes generate a strong horizontal field component to induce isotropic-to-anisotropic transition in the BPLC medium through Kerr effect. Moreover, this field is uniformly distributed across the entire LC layer so that the accumulated phase retardation along the beam path is large, resulting in low voltage and high transmittance. This approach enables BPLC to be addressed by amorphous-silicon thin film transistors, which would accelerate its emergence as next-wave display technology
Device physics and electro-optical properties of emerging polymer-stabilized blue-phase liquid cryst...
From cell phones, laptops, desktops, TVs, to projectors, high reliability LCDs have become indispens...
A low-voltage ( \u3c 10 V), high-transmittance ( \u3e 80%), submillisecond-response, and hysteresis-...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
A protrusion electrode structure is proposed to dramatically lower the operation voltage of the emer...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
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...
Device physics and electro-optical properties of emerging polymer-stabilized blue-phase liquid cryst...
Device physics and electro-optical properties of emerging polymer-stabilized blue-phase liquid cryst...
From cell phones, laptops, desktops, TVs, to projectors, high reliability LCDs have become indispens...
A low-voltage ( \u3c 10 V), high-transmittance ( \u3e 80%), submillisecond-response, and hysteresis-...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
In this paper, a low voltage (\u3c10V) and high transmittance (∼85.6%) polymer-stabilized blue-phase...
A protrusion electrode structure is proposed to dramatically lower the operation voltage of the emer...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
We propose a polymer???stabilized blue phase liquid crystal (PS???BPLC) device with low operation vo...
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...
Device physics and electro-optical properties of emerging polymer-stabilized blue-phase liquid cryst...
Device physics and electro-optical properties of emerging polymer-stabilized blue-phase liquid cryst...
From cell phones, laptops, desktops, TVs, to projectors, high reliability LCDs have become indispens...
A low-voltage ( \u3c 10 V), high-transmittance ( \u3e 80%), submillisecond-response, and hysteresis-...