We employ a physical theory to construct a computational model that accounts for both multiple scattering and absorption of light. The approach does not require a calibration model. Mie theory to describe single particle scattering, which is combined with the diffuse approximation to the radiative transfer equation to provides an analytical prediction of the reflectance. This approach is applied to experimental reflectance measurements on polystyrene particle suspensions with a wide range of particle radii and volume fractions. The method provides good estimates of the suspension properties from a full NIR-vis-UV spectrum
We have developed a parametric analysis of diffuse scattering (haze) measured by integrating sphere,...
Particle size distribution is vitally important in pharmaceutical formulation. Spectroscopy is the m...
This thesis covers angle-resolved spectrophotometric measurements and modelling of diffuse reflectan...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
The particle characteristics in a suspension affect the performance and quality of the end product o...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
This thesis explores four methods for improving quantitative diffuse reflectance spec...
PhD ThesisTwo approaches for removing multiple light scattering effects using the radiative transfe...
The effectiveness of a scatter correction approach based on decoupling absorption and scattering eff...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
Sample-to-sample photon path length variations that arise due to multiple scattering can be removed ...
We have developed a parametric analysis of diffuse scattering (haze) measured by integrating sphere,...
Particle size distribution is vitally important in pharmaceutical formulation. Spectroscopy is the m...
This thesis covers angle-resolved spectrophotometric measurements and modelling of diffuse reflectan...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
The particle characteristics in a suspension affect the performance and quality of the end product o...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
An approach for removing multiple light scattering effects using the radiative transfer theory (RTE)...
This thesis explores four methods for improving quantitative diffuse reflectance spec...
PhD ThesisTwo approaches for removing multiple light scattering effects using the radiative transfe...
The effectiveness of a scatter correction approach based on decoupling absorption and scattering eff...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
We present computationally efficient and accurate semiempirical models of light transfer suitable fo...
Sample-to-sample photon path length variations that arise due to multiple scattering can be removed ...
We have developed a parametric analysis of diffuse scattering (haze) measured by integrating sphere,...
Particle size distribution is vitally important in pharmaceutical formulation. Spectroscopy is the m...
This thesis covers angle-resolved spectrophotometric measurements and modelling of diffuse reflectan...