Effective Mie Scattering of a Spherical Fractal Aggregate and its Application in Turbid Media
Applied Optics, Vol. 43, Issue 14, pp. 2925-2929 doi:10.1364/AO.43.002925
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- OCIS Codes:
- (290.0290) Scattering : Scattering
- (290.4020) Scattering : Mie theory
- (290.4210) Scattering : Multiple scattering
- (290.7050) Scattering : Turbid media
Citation
Xiaoyuan Deng, Xiaosong Gan, and Min Gu, "Effective Mie Scattering of a Spherical Fractal Aggregate and its Application in Turbid Media," Appl. Opt. 43, 2925-2929 (2004)
http://www.opticsinfobase.org/abstract.cfm?URI=ao-43-14-2925
Abstract
An effective Mie-scattering model is developed to deal with the scattering property of a spherical fractal aggregate consisting of scattering particles. In this model the scattered field of a scattering particle is given by the classical Mie-scattering theory. On the basis of the Monte Carlo simulation method, we determine the physical parameters of a scattering aggregate, the scattering efficiency Q, and the anisotropy value g, as well as their dependence on the size and the effective mean-free-path length of a scattering aggregate. Accordingly, photon migration through a microscope objective focused into a turbid medium including scattering aggregates is simulated to understand the effect of complex tissue on image quality.
© 2004 Optical Society of America
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