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Dynamics in shear flow studied by X-ray Photon Correlation Spectroscopy

机译:X射线光子相关光谱法研究剪切流动力学

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摘要

X-ray Photon Correlation Spectroscopy was used to measure the diffusive dynamics of colloidal particles in a shear flow. The results presented here show how the intensity autocorrelation functions measure both the diffusive dynamics of the particles and their flow-induced, convective motion. However, in the limit of low flow/shear rates, it is possible to obtain the diffusive component of the dynamics, which makes the method suitable for the study of the dynamical properties of a large class of complex soft-matter and biological fluids. An important benefit of this experimental strategy over more traditional X-ray methods is the minimization of X-ray–induced beam damage. While the method can be applied also for photon correlation spectroscopy in the visible domain, our analysis shows that the experimental conditions under which it is possible to measure the diffusive dynamics are easier to achieve at higher q values (with X-rays).
机译:X射线光子相关光谱法用于测量剪切流中胶体颗粒的扩散动力学。此处显示的结果表明强度自相关函数如何测量粒子的扩散动力学及其流动引起的对流运动。然而,在低流动/剪切速率的极限下,可以获得动力学的扩散成分,这使得该方法适合于研究大量复杂的软物质和生物流体的动力学性质。与其他传统的X射线方法相比,该实验策略的重要优势在于将X射线引起的光束损伤最小化。虽然该方法也可以应用于可见光域的光子相关光谱,但我们的分析表明,可以在更高q值(使用X射线)下实现测量扩散动力学的实验条件。

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