The simulation of light reflected by polymer-dispersed cholesteric liquid crystals is carried out using a model that takes into account the domain structure of the layer. The model is based on the 4×4 matrix calculation method of Berreman. One considers different orientations of the helical axis in multi- and single-domain configurations. The assumption of the distribution of helical axis orientations in the multi-domain model allows the description of optical properties of multi-stable director configurations. Polarization properties of the reflected light are investigated. © 2002 Elsevier Science B.V. All rights reserved
The dynamic electro‐optic (EO) response of polymer‐stabilized cholesteric liquid crystals prepared u...
International audienceA planar oriented cholesteric liquid crystal (CLC) may selectively reflect lig...
The exact calculation of the reflection from single domain aligned samples of helicoidal liquid crys...
In this paper we discuss the optical reflective properties of single and multidomain cholesteric liq...
International audienceSingle-layer cholesteric liquid crystals exhibit a reflection coefficient whic...
The interference of the nonpolarized light transmitted through an ensemble of nematic liquid crystal...
International audienceCholesteric liquid-crystalline states of matter are abundant in nature: athero...
International audiencePolymer-stabilized cholesteric liquid crystals ͑PSCLCs͒ with a double-handed c...
In this study we examine a new computer model of light scattering. Light propagation through a colum...
Abstract In this paper we calculated reflectance and transmittance of different optical birefringent...
Polymer dispersed liquid crystals (PDLC's) are composite materials made of a dispersion of liquid-cr...
Circularly polarized light was previously employed to stimulate the reversible and reconfigurable wr...
QC 351 A7 no. 63A Jones matrix operator is derived for a liquid crystal in the cholesteric phase for...
International audienceCholesteric liquid crystals (CLCs) selectively reflect light when the waveleng...
International audienceThe cholesteric-liquid-crystalline structure, which concerns the organization ...
The dynamic electro‐optic (EO) response of polymer‐stabilized cholesteric liquid crystals prepared u...
International audienceA planar oriented cholesteric liquid crystal (CLC) may selectively reflect lig...
The exact calculation of the reflection from single domain aligned samples of helicoidal liquid crys...
In this paper we discuss the optical reflective properties of single and multidomain cholesteric liq...
International audienceSingle-layer cholesteric liquid crystals exhibit a reflection coefficient whic...
The interference of the nonpolarized light transmitted through an ensemble of nematic liquid crystal...
International audienceCholesteric liquid-crystalline states of matter are abundant in nature: athero...
International audiencePolymer-stabilized cholesteric liquid crystals ͑PSCLCs͒ with a double-handed c...
In this study we examine a new computer model of light scattering. Light propagation through a colum...
Abstract In this paper we calculated reflectance and transmittance of different optical birefringent...
Polymer dispersed liquid crystals (PDLC's) are composite materials made of a dispersion of liquid-cr...
Circularly polarized light was previously employed to stimulate the reversible and reconfigurable wr...
QC 351 A7 no. 63A Jones matrix operator is derived for a liquid crystal in the cholesteric phase for...
International audienceCholesteric liquid crystals (CLCs) selectively reflect light when the waveleng...
International audienceThe cholesteric-liquid-crystalline structure, which concerns the organization ...
The dynamic electro‐optic (EO) response of polymer‐stabilized cholesteric liquid crystals prepared u...
International audienceA planar oriented cholesteric liquid crystal (CLC) may selectively reflect lig...
The exact calculation of the reflection from single domain aligned samples of helicoidal liquid crys...