English

Size distribution of particle systems analyzed with organic photodetectors

Optics 2015-03-16 v1

Abstract

As part of a consortium between academic and industry, this PhD work investigates the interest and capabilities of organic photo-sensors (OPS) for the optical characterization of suspensions and two-phase flows. The principle of new optical particle sizing instruments is proposed to characterize particle systems confined in a cylinder glass (standard configuration for Process Analytical Technologies). To evaluate and optimize the performance of these systems, a Monte-Carlo model has been specifically developed. This model accounts for the numerous parameters of the system: laser beam profile, mirrors, lenses, sample cell, particle medium properties (concentration, mean & standard deviation, refractive indices), OPS shape and positions, etc. Light scattering by particles is treated either by using Lorenz-Mie theory, Debye, or a hybrid model (that takes into account the geometrical and physical contributions). For diluted media (single scattering), particle size analysis is based on the inversion of scattering diagrams obtained over a wide angular range or near optical singularities (rainbow, critical scattering, diffraction). For dense media (multiple scattering), the solutions foreseen are based on the analysis of the backscattering spotlight characteristics.

Keywords

Cite

@article{arxiv.1503.04082,
  title  = {Size distribution of particle systems analyzed with organic photodetectors},
  author = {Matthias Sentis},
  journal= {arXiv preprint arXiv:1503.04082},
  year   = {2015}
}

Comments

PhD Thesis, in French, Marseille, Dec 2014