A parallel computational FDTD approach to the analysis of the light scattering from an opal photonic crystal
Conference Paper
Publication Date:
2013
abstract:
This paper describes the parallel computational approach for the analysis of the multiple scattering of light from
a three dimensional ensemble of many spherical particles having an ordered face-centered cubic lattice structure.
The solution is obtained by numerically solving the Maxwell's equations using the FDTD (Finite Difference
Time Domain) method with an impinging electromagnetic plane. The aim is to simulate the reflectance and transmittance of the system in the 300700 nm wavelength range, calculating also the angular power distribution
of the scattered light. This study is suitable for the optical characterization of opal photonic crystals.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
opal photonic crystal; face-centered cubic FDTD; transmittance band-gap; FDTD; parallel computing
List of contributors:
Chiappini, Andrea; Ferrari, Maurizio
Book title:
Integrated Optics: Physics and Simulations
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