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Spectra intensity correlations of backscattered diffuse light: the effect of scattering anisotropy

机译:反向散射漫射光的光谱强度相关性:散射各向异性的影响

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In this work, we report experiments and a theoretical scheme of photon transport in the frequency domain of rigid turbid media. We have employed spectral multi-speckle intensity correlations to estimate optical properties as the transport mean free path and the absorption length of turbid systems. We propose a scheme based on the photon diffusion model using an effective path-length distribution in the backscattering configuration and take explicitly into account the particles scattering anisotropy parameter g. By studying rigid Teflon slabs and polymer matrices doped with polystyrene particles of different degrees of scattering anisotropy, we find that the proposed model adequately describes our experimental results. Our hypothesis for the diffuse transport of backscattered photons in the weak multiple scattering regime is further validated using a numerical simulation scheme of speckle dynamics, based on the Copula method. (C) 2020 Optical Society of America
机译:在这项工作中,我们报告了刚性浑浊介质频域中光子传输的实验和理论方案。 我们采用了光谱多散饼强度相关性,以估计光学性质作为传输意味着自由路径和浑浊系统的吸收长度。 我们提出了一种基于光子扩散模型的方案,使用反向散射配置中的有效路径长度分布,并明确考虑颗粒散射各向异性参数G. 通过研究掺杂有不同程度的散射各向异性的聚苯乙烯颗粒的刚性Teflon板和聚合物基质,我们发现所提出的模型充分描述了我们的实验结果。 基于Copula方法,我们使用散斑动力学的数值模拟方案进一步验证了我们对弱多个散射方案中的反向散射光子的漫反射光子的漫反射传输的假设。 (c)2020美国光学学会

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