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Fast Symmetric Normalization of the Intensity Autocorrelation Function in Particle Sizing by Photon Correlation Spectroscopy

机译:光子相关光谱法对颗粒尺寸调整中强度自相关函数的快速对称归一化

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摘要

Normalization and subsequent baseline error is a notorious problem in dynamic light scattering (DLS). In a multiple sample time measurement, although the already available symmetric or compensated normalization can eliminate most of those statistical errors from a measured intensity autocorrelation function, a large number of additional monitoring channels in hardware are require. In this paper a fast symmetric normalization is presented. By sharing the channels between linear correlator and monitor at large delay time, the requirement of hardware resource is reduced dramatically. The method was systematically tested using suspension of standard latex particles. Comparing to the results by standard and symmetric normalization, it has the advantage of low estimation bias and hardware dependency.
机译:归一化和随后的基线误差是动态光散射(DLS)中一个臭名昭著的问题。在多次采样时间测量中,尽管已经可用的对称或补偿归一化可以从测量到的强度自相关函数中消除大多数统计误差,但是在硬件中还需要大量其他监视通道。本文提出了一种快速对称归一化方法。通过在较大的延迟时间之间共享线性相关器和监视器之间的通道,可以大大降低对硬件资源的需求。使用标准胶乳颗粒的悬浮液对该方法进行了系统测试。与标准和对称归一化的结果相比,它具有低估计偏差和硬件依赖性的优点。

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