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Discrete-Dipole Approximation For Scattering Calculations
3.6K
Citations
55
References
1994
Year
Numerical AnalysisDiscrete-dipole ApproximationEngineeringComputational ChemistryLight Scattering SpectroscopyRayleigh ScatteringOptical PropertiesHomogeneous SpheresComputational ElectromagneticsDielectric MaterialsApproximation TheoryMaterials SciencePhysicsQuantum ChemistryNatural SciencesSpectroscopyWave ScatteringApplied PhysicsLight ScatteringHigh-frequency Approximation
The discrete-dipole approximation (DDA) for scattering calculations, including the relationship between the DDA and other methods, is reviewed. Computational considerations, i.e., the use of complex-conjugate gradient algorithms and fast-Fourier-transform methods, are discussed. We test the accuracy of the DDA by using the DDA to compute scattering and absorption by isolated, homogeneous spheres as well as by targets consisting of two contiguous spheres. It is shown that, for dielectric materials (|m| ≲ 2), the DDA permits calculations of scattering and absorption that are accurate to within a few percent.
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