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- W3082009299 abstract "In the analysis of light scattering by small particles, the Generalized Lorenz-Mie Theory (GLMT) describes the incident beam with a set of Beam Shape Coefficients (BSCs) that can be calculated with three different approaches, viz., quadratures, finite series and localized approximations. Choosing between them may not be self-evident. A Bessel-Gauss beam (BGB) is a finite energy, physically realizable wave field resulting from the apodization of a Bessel beam by a Gaussian function. This paper provides a comparison between the aforementioned techniques for the evaluation of the BSCs of scalar BGBs with distinct axicon angles and confinement parameters, including field reconstructions. All three methods agree quite well in the paraxial regime, although as the axicon angle or the topological charge increases, differences in the BSCs for each method become more and more evident." @default.
- W3082009299 created "2020-09-08" @default.
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- W3082009299 date "2020-11-01" @default.
- W3082009299 modified "2023-10-15" @default.
- W3082009299 title "Bessel-Gauss beams in the generalized Lorenz-Mie theory using three remodeling techniques" @default.
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- W3082009299 doi "https://doi.org/10.1016/j.jqsrt.2020.107292" @default.
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