Multiple scattering of light from polymer dispersed liquid crystal material
JHM Neijzen, HMJ Boots, FAMA Paulissen… - Liquid …, 1997 - Taylor & Francis
JHM Neijzen, HMJ Boots, FAMA Paulissen, MB VAN DER MARK, HJ Cornelissen
Liquid crystals, 1997•Taylor & FrancisLight scattering from polymer dispersed liquid crystal (PDLC) material has been studied
experimentally and by Monte Carlo simulation. Light scattering was measured as a function
of both scattering angle and cell thickness. The cell thicknesses of practical interest are in an
intermediate regime where neither single scattering nor light diffusion applies. Both the
angular and the thickness dependence of the scattering intensity can be described
accurately by a Monte Carlo simulation of multiple scattering from a homogeneous …
experimentally and by Monte Carlo simulation. Light scattering was measured as a function
of both scattering angle and cell thickness. The cell thicknesses of practical interest are in an
intermediate regime where neither single scattering nor light diffusion applies. Both the
angular and the thickness dependence of the scattering intensity can be described
accurately by a Monte Carlo simulation of multiple scattering from a homogeneous …
Light scattering from polymer dispersed liquid crystal (PDLC) material has been studied experimentally and by Monte Carlo simulation. Light scattering was measured as a function of both scattering angle and cell thickness. The cell thicknesses of practical interest are in an intermediate regime where neither single scattering nor light diffusion applies. Both the angular and the thickness dependence of the scattering intensity can be described accurately by a Monte Carlo simulation of multiple scattering from a homogeneous distribution of independent scatterers. The model smoothly interpolates between the single scattering limit for thin cells and the diffusion limit for thick cells. It can easily be extended to include any specific feature of a scattering display system.
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