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调制三维互相关光散射:改善浑浊样品表征

Modulated 3D cross-correlation light scattering: improving turbid sample characterization.

作者信息

Block Ian D, Scheffold Frank

机构信息

LS Instruments AG, Rte de la Fonderie 2, Fribourg, Switzerland.

出版信息

Rev Sci Instrum. 2010 Dec;81(12):123107. doi: 10.1063/1.3518961.

Abstract

Accurate characterization using static light scattering (SLS) and dynamic light scattering (DLS) methods mandates the measurement and analysis of singly scattered light. In turbid samples, the suppression of multiple scattering is therefore required to obtain meaningful results. One powerful technique for achieving this, known as 3D cross-correlation, uses two simultaneous light scattering experiments performed at the same scattering vector on the same sample volume in order to extract only the single scattering information common to both. Here we present a significant improvement to this method in which the two scattering experiments are temporally separated by modulating the incident laser beams and gating the detector outputs at frequencies exceeding the timescale of the system dynamics. This robust modulation scheme eliminates cross-talk between the two beam-detector pairs and leads to a fourfold improvement in the cross-correlation intercept. We measure the dynamic and angular-dependent scattering intensity of turbid colloidal suspensions and exploit the improved signal quality of the modulated 3D cross-correlation DLS and SLS techniques.

摘要

使用静态光散射(SLS)和动态光散射(DLS)方法进行准确表征需要对单次散射光进行测量和分析。因此,在浑浊样品中,需要抑制多次散射以获得有意义的结果。一种实现此目的的强大技术,称为3D互相关,它使用在相同散射矢量下对同一样品体积进行的两个同时光散射实验,以便仅提取两者共有的单次散射信息。在这里,我们对该方法进行了重大改进,其中通过调制入射激光束并在超过系统动力学时间尺度的频率下对探测器输出进行选通,使两个散射实验在时间上分开。这种稳健的调制方案消除了两个光束 - 探测器对之间的串扰,并使互相关截距提高了四倍。我们测量了浑浊胶体悬浮液的动态和角度相关散射强度,并利用调制的3D互相关DLS和SLS技术改善的信号质量。

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