Discrete-dipole approximation with surface interaction: computational toolbox for MATLAB

Title Discrete-dipole approximation with surface interaction: computational toolbox for MATLAB
Author Loke, Vincent L. Y., Mengüç, Mustafa Pınar, Nieminen, T. A.
Publication Date: 2011-07
Publication Place - Elsevier
Subject DDA, DDA-SI, MATLAB toolbox, Sommerfeld integral, Light scattering
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 0022-4073
Record ID 9e1ca663-8027-4de3-ae14-9e18d4a0caac
Library Location Mechanical Engineering
Date 2011-07
Notes Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Sample Text We describe a MATLAB toolbox that utilizes the discrete-dipole approximation (DDA) method for modelling light interaction with arbitrarily-shape scatterers in free space as well with planar surface interaction (DDA-SI). The range of applicable models range from optical micromanipulation, plamonics, nano-antennae, near-field coupling and general light interaction with scatterers ranging from a few nanometers to several microns in size.
DOI 10.1016/j.jqsrt.2011.03.012
Cilt 112
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Discrete-dipole approximation with surface interaction: computational toolbox for MATLAB

Author Loke, Vincent L. Y., Mengüç, Mustafa Pınar, Nieminen, T. A.
Publication Date 2011-07
Publication Place - Elsevier
Subject DDA, DDA-SI, MATLAB toolbox, Sommerfeld integral, Light scattering
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 0022-4073
Record ID 9e1ca663-8027-4de3-ae14-9e18d4a0caac
Library Location Mechanical Engineering
Date 2011-07
Notes Due to copyright restrictions, the access to the full text of this article is only available via subscription.
Sample Text We describe a MATLAB toolbox that utilizes the discrete-dipole approximation (DDA) method for modelling light interaction with arbitrarily-shape scatterers in free space as well with planar surface interaction (DDA-SI). The range of applicable models range from optical micromanipulation, plamonics, nano-antennae, near-field coupling and general light interaction with scatterers ranging from a few nanometers to several microns in size.
DOI 10.1016/j.jqsrt.2011.03.012
Cilt 112
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