Application of Mie theory to assess structure of spheroidal scattering in backscattering geometries.
Application of Mie theory to assess structure of spheroidal scattering in backscattering geometries.
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DOI:
10.1364/josaa.25.001866
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发表时间:
2008-08
期刊:
影响因子:
--
通讯作者:
Wax A
中科院分区:
文献类型:
--
作者:
Chalut KJ;Giacomelli MG;Wax A
Inverse light scattering analysis seeks to associate measured scattering properties with the most probable theoretical scattering distribution. Although Mie theory is a spherical scattering model, it has been used successfully for discerning the geometry of spheroidal scatterers. The goal of this study was an in-depth evaluation of the consequences of analyzing the structure of spheroidal geometries, which are relevant to cell and tissue studies in biology, by employing Mie-theory-based inverse light scattering analysis. As a basis for this study, the scattering from spheroidal geometries was modeled using T-matrix theory and used as test data. In a previous study, we used this technique to investigate the case of spheroidal scatterers aligned with the optical axis. In the present study, we look at a broader scope which includes the effects of aspect ratio, orientation, refractive index, and incident light polarization. Over this wide range of parameters, our results indicate that this method provides a good estimate of spheroidal structure.
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