Topic
Light scattering
About: Light scattering is a research topic. Over the lifetime, 37721 publications have been published within this topic receiving 861581 citations.
Papers published on a yearly basis
Papers
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01 Sep 1995
TL;DR: In this article, a Catalogue of Droplet Structures of Gels and Porous Glasses is presented, along with methods for Probing Droplet Structure Catalogue and Configurations, and Electro-Optical Effects: Light Scattering Dichroic Effects Droplet Reorientation Fields Response Times Hysteresis and Persistence Effects Film Dielectric Properties Nonlinear Optical Effects.
Abstract: Methods for Film Formation: Emulsification Methods Phase-Separation Methods. Droplet Configurations: Methods for Probing Droplet Structure Catalogue of Droplet Structures Transformations between Droplet Structures Gels and Porous Glasses. Electro-Optical Effects: Light Scattering Dichroic Effects Droplet Reorientation Fields Response Times Hysteresis and Persistence Effects Film Dielectric Properties Nonlinear Optical Effects. Applications: Projection Displays Direct-View Displays Light-Valve Applications.
1,048 citations
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TL;DR: In this article, the light scattering and electro-optic response of new material with display potential are investigated, which consist of microdroplets of nematic liquid crystals which are spontaneously formed in a solid polymer at the time of its polymerization.
Abstract: The light scattering and electro‐optic response of new material with display potential are investigated. The materials consist of microdroplets of nematic liquid crystals which are spontaneously formed in a solid polymer at the time of its polymerization. Droplet size, spacing, and distribution are readily controlled in these materials to allow optimization of displays based upon electrically controlled light scattering from the liquid crystal droplets. Preliminary experimental and theoretical studies of the light scattering properties show these materials to offer new features suitable for many display applications.
1,044 citations
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TL;DR: In this article, it was shown that a low-density gas can be cooled by illuminating it with intense, quasi-monochromatic light confined to the lower-frequency half of a resonance line's Doppler width.
1,039 citations
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01 Jan 1984TL;DR: New algorithms to trace objects represented by densities within a volume grid, e.g. clouds, fog, flames, dust, particle systems, suitable for use in computer graphics are presented.
Abstract: This paper presents new algorithms to trace objects represented by densities within a volume grid, e.g. clouds, fog, flames, dust, particle systems. We develop the light scattering equations, discuss previous methods of solution, and present a new approximate solution to the full three-dimensional radiative scattering problem suitable for use in computer graphics. Additionally we review dynamical models for clouds used to make an animated movie.
1,038 citations
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1,037 citations