Zimnyakov Dmitry A, Pravdin Alexander B, Kuznetsova Liana V, Kochubey Vyacheslav I, Tuchin Valery V, Wang Ruikang K, Ushakova Olga V
Optics Department, Saratov State University, Russia.
J Opt Soc Am A Opt Image Sci Vis. 2007 Mar;24(3):711-23. doi: 10.1364/josaa.24.000711.
The transport properties of dense random media such as rutile powder layers and polyball suspensions are analyzed in visible and near infrared on the basis of experimental data on coherent backscattering, diffuse transmittance, and low-coherence interferometry. The developed technique of retrieval of the transport parameters of examined scattering media allows the evaluation of the transport mean free path l* and the effective refractive index n(ef) of the medium without a priori knowledge of the optical properties of the scattering particles. It is found that with decreasing wavelength lambda(0) the value of localization parameter 2pin(ef)l*/lambda(0) of the studied rutile samples abruptly drops and approaches approximately 2.6 at 473 nm. This peculiarity is caused by the very large scattering efficiency of scatterers in the vicinity of the first Mie resonance.
基于相干背散射、漫透射率和低相干干涉测量的实验数据,对金红石粉末层和多球悬浮液等致密随机介质在可见光和近红外波段的传输特性进行了分析。所开发的用于获取被研究散射介质传输参数的技术,能够在无需事先了解散射粒子光学特性的情况下,评估介质的传输平均自由程l和有效折射率n(ef)。研究发现,随着波长lambda(0)的减小,所研究金红石样品的局域化参数2pin(ef)l/lambda(0)的值急剧下降,并在473nm处接近约2.6。这种特性是由散射体在第一个米氏共振附近非常大的散射效率所导致的。