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3D representation of the scattering of a Gaussian beam by a homogeneous spherical particle based on the far-field version of GLMT to visualize the scattering of a Gaussian beam by a homogeneous, isotropic and spherical particle arbitrarily located in the beam. Supplementary resources with the book:
Gérard Gouesbet and Gérard Gréhan. Generalized Lorenz-Mie Theories. Springer, Berlin Heidelberg, 2011, ISBN 978-3-642-17193-2.
Online Mie scattering calculator written completely on PHP based on the Fortran code of Bohren-Huffman, by Pavel Zakharov.
Fortran code by Lamont V. Blake to compute radar cross section of a conductiong sphere.
LabView Mie scattering program by Martin Fierz.
Various coated sphere or core shell Mie Fortran codes by Thomas P. Ackerman.
- Link (11 Jul 2011, 31 Jul 2015)
Scattering of light from small sphere based on WebMathematica by Cheng Zhu and Tal Carmon.

PROBEoptprops is a MATLAB based graphical user interface (GUI) used to model the optical properties of single metal nanoparticles and uses a modification of the quasi-static approximation. Written by Kaspar Ko.
SimScat by Peter J.T. Verheijen can be used to calculate the light scattering pattern from a distribution of particles to analyze Laser Diffraction instruments.
PROBEoptprops.zip is a graphical user interface (GUI, MATLAB) to model the optical properties of single metal nanoparticles that uses a modification of the quasi-static approximation.
Written by Kaspar Ko for PROBE Lab as a part of an independent study project under the guidance of K.C. Toussaint, Jr. in Summer 2008 at the University of Illinois at Urbana-Champaign (UIUC).
This FORTRAN code for spherical scatterers with a complex permittivity and a complex permeability is listed in
Merril E. Milham, Electromagnetic scattering by magnetic spheres: theory and algorithms, Edgewood Research Development and Engineering Center, ERDEC-TR-207, Oct. 1994, ADA289798.
The size parameter may be as large as 23000.
- Link, report (28 Sep 2009)
- Link, local copy of the code (12 Apr 2010)
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