The ray tracing with diffraction on facets (RTDF) model is suitable for rapid computation of scattering on faceted dielectric objects such as ice crystals. It combines ray tracing with diffraction on flat facets. The model calculates diffraction using an approximation for the far field direction of the Poynting vector. In this paper an estimate based on an approximation by Prosser for the electric and magnetic fields describing diffraction at a slit is used to calculate energy flow lines and their far field deflection angle. Best-fit formulas describing the dependence of the far field deflection angle on the size parameter, angle of incidence, and the position of the flow line in the plane of the slit are derived and incorporated into the R...
An investigation is presented into methods of characterising cirrus ice crystals from in-situ light ...
Geometrical acoustics models are currently the most popular prediction tools in room-acoustics due t...
A comparison of the physical optics code and GOIE method to solve the problem of light scattering by...
A new model suitable for rapid computation of scattering on faceted dielectric objects such as ice c...
The viability of introducing phase tracing into our ray tracing with diffraction on facets model is ...
Copyright University of BremenThe viability of introducing phase tracing into our ray tracing with d...
A new model suitable for rapid computation of scattering on faceted dielectric objects such as ice c...
A 3D implementation of a new model of light scattering applicable to dielectric faceted objects is i...
Copyright University of BremenA new model suitable for rapid computation of scattering on faceted di...
Special issue on XI Conference on Electromagnetic and Light Scattering by Non-Spherical Particles: 2...
Laurence Taylor, Evelyn Hesse, Z. Ulanowski, Paul H. Kaye, Antti Penttila, Timo Nousiainen, ‘Beam tr...
While exact methods, such as DDA or T-matrix, can be applied to particles withsizes comparable to th...
Three different mathematical solutions of a physical optics model for far field diffraction by an ap...
This document is the Accepted Manuscript version of the following article: A. J. Baran, Evelyn Hesse...
International audienceGeometrical acoustics models are currently the most popular prediction tools i...
An investigation is presented into methods of characterising cirrus ice crystals from in-situ light ...
Geometrical acoustics models are currently the most popular prediction tools in room-acoustics due t...
A comparison of the physical optics code and GOIE method to solve the problem of light scattering by...
A new model suitable for rapid computation of scattering on faceted dielectric objects such as ice c...
The viability of introducing phase tracing into our ray tracing with diffraction on facets model is ...
Copyright University of BremenThe viability of introducing phase tracing into our ray tracing with d...
A new model suitable for rapid computation of scattering on faceted dielectric objects such as ice c...
A 3D implementation of a new model of light scattering applicable to dielectric faceted objects is i...
Copyright University of BremenA new model suitable for rapid computation of scattering on faceted di...
Special issue on XI Conference on Electromagnetic and Light Scattering by Non-Spherical Particles: 2...
Laurence Taylor, Evelyn Hesse, Z. Ulanowski, Paul H. Kaye, Antti Penttila, Timo Nousiainen, ‘Beam tr...
While exact methods, such as DDA or T-matrix, can be applied to particles withsizes comparable to th...
Three different mathematical solutions of a physical optics model for far field diffraction by an ap...
This document is the Accepted Manuscript version of the following article: A. J. Baran, Evelyn Hesse...
International audienceGeometrical acoustics models are currently the most popular prediction tools i...
An investigation is presented into methods of characterising cirrus ice crystals from in-situ light ...
Geometrical acoustics models are currently the most popular prediction tools in room-acoustics due t...
A comparison of the physical optics code and GOIE method to solve the problem of light scattering by...