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通过三维辐射传输模拟估算水生颗粒光吸收分光光度测量中的散射误差。

Estimation of scattering error in spectrophotometric measurements of light absorption by aquatic particles from three-dimensional radiative transfer simulations.

作者信息

Stramski Dariusz, Piskozub Jacek

机构信息

Marine Physical Laboratory, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92093-0238, USA.

出版信息

Appl Opt. 2003 Jun 20;42(18):3634-46. doi: 10.1364/ao.42.003634.

Abstract

We present an approach based on three-dimensional Monte Carlo radiative transfer simulations for estimating scattering error in measurements of light absorption by aquatic particles with a typical laboratory double-beam spectrophotometer. The scattering error is calculated by combining the weighting function describing the angular distribution of photon losses that are due to scattering on suspended particles with the volume scattering function of particles. We applied this method to absorption measurements made on marine phytoplankton, a diatom Thalassiosira pseudonana and a cyanobacterium Synechococcus. Assuming that the scattering phase function is described by the Henyey-Greenstein formula, we determined the backscatter probability of phytoplankton, which yields the best correction for scattering error at a light wavelength of 750 nm, where true absorption is null. The backscattering ratio estimated for both phytoplankton species is significantly higher than previously reported data based on Mie-scattering calculations for homogeneous spheres. Depending on the type of particles, the corrected absorption spectra obtained with our method may be similar or significantly different from spectra obtained with the null-point correction based on wavelength-independent scattering error.

摘要

我们提出了一种基于三维蒙特卡罗辐射传输模拟的方法,用于使用典型的实验室双光束分光光度计估算水生颗粒光吸收测量中的散射误差。通过将描述由于悬浮颗粒散射导致的光子损失角分布的权重函数与颗粒的体积散射函数相结合来计算散射误差。我们将此方法应用于对海洋浮游植物、硅藻假微型海链藻和蓝藻聚球藻进行的吸收测量。假设散射相函数由亨尼西 - 格林斯坦公式描述,我们确定了浮游植物的后向散射概率,该概率在750nm光波长处对散射误差产生了最佳校正,此时真实吸收为零。估算的两种浮游植物的后向散射比均显著高于先前基于均匀球体米氏散射计算报告的数据。根据颗粒类型,用我们的方法获得的校正吸收光谱可能与基于与波长无关的散射误差的零点校正获得的光谱相似或显著不同。

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