Cylindrical fibre orientation analysis by light scattering. Part 1: Numerical aspects
T Girasole, H Bultynck, G Gouesbet… - Particle & particle …, 1997 - Wiley Online Library
Particle & particle systems characterization, 1997•Wiley Online Library
The scattering of a finite beam by an ensemble of infinite cylinders, with a spatial orientation
function of the depth, is simulated by using a Monte Carlo type code, including multiple
scattering effects. The properties of the scattered light collected by detectors, such as the
spatial distribution of intensities, are predicted, taking into account the polarization
dependence.
function of the depth, is simulated by using a Monte Carlo type code, including multiple
scattering effects. The properties of the scattered light collected by detectors, such as the
spatial distribution of intensities, are predicted, taking into account the polarization
dependence.
The scattering of a finite beam by an ensemble of infinite cylinders, with a spatial orientation function of the depth, is simulated by using a Monte Carlo type code, including multiple scattering effects. The properties of the scattered light collected by detectors, such as the spatial distribution of intensities, are predicted, taking into account the polarization dependence.
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