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Photometric immersion refractometry: a method for determining the refractive index of marine microbial particles from beam attenuation

机译:光度浸没折光法:一种通过光束衰减确定海洋微生物颗粒折射率的方法

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Photometric immersion refractometry is a technique for determining the refractive index of particulate material. In this technique, the attenuation of light by a suspension of particles is measured as a function of the refractive index of the immersion medium. A minimum attenuation occurs at the refractive index of the medium equal to that of the particles. This technique can serve as a benchmark method for the refractive index determination because it is independent of assumptions invoked by other techniques, such as those based on the inversion of the spectral attenuation data. We present a rigorous model of the photometric immersion refractometry based on the anomalous diffraction approximation for the attenuation efficiency of particles. This model permits one to determine the average value of the real part of the refractive index of the particles, its variance, and the average imaginary part of the refractive index of the particles. In addition, the fourth moment of the particle size distribution can be determined if the concentration and shape of the particles are known. We analyze the sensitivity of this model to experimental errors and discuss the applicability of photometric immersion refractometry to marine microbial particles. We also present experimental results of this technique as applied to heterotrophic marine bacteria. The results indicate that the refractive index of these bacteria was narrowly distributed about the average value of 1.3886.# 1997 Optical Society of America
机译:光度浸没折光法是一种确定颗粒材料折射率的技术。在该技术中,由颗粒悬浮液引起的光衰减被测量为浸没介质折射率的函数。在等于颗粒的介质的折射率处发生最小衰减。该技术可以用作确定折射率的基准方法,因为它独立于其他技术(例如基于光谱衰减数据求逆的技术)调用的假设。我们提出了一个基于异常衍射近似的光度浸没折光法的严格模型,以用于颗粒的衰减效率。该模型允许确定颗粒的折射率的实部的平均值,其方差以及颗粒的折射率的平均虚部。另外,如果已知颗粒的浓度和形状,则可以确定粒度分布的第四矩。我们分析了该模型对实验误差的敏感性,并讨论了光度浸没折光法对海洋微生物颗粒的适用性。我们还介绍了该技术应用于异养海洋细菌的实验结果。结果表明,这些细菌的折射率在平均值1.3886附近狭窄分布。#1997美国光学学会

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