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Regularized phase tracker with isophase scanning strategy for analysis of dynamic interferograms of nonwetting droplets under excitation

机译:具有等相扫描策略的正则相位跟踪器,用于分析激发条件下非润湿液滴的动态干涉图

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摘要

The surface of a nonwetting droplet is separated from a solid surface by a continuous supply of a lubricating gas film within the apparent contact region. Under certain conditions, e.g., application of an external excitation force, the gas film thickness can decrease to a level where intermolecular forces cause the droplet to wet the surface. The thickness of the lubricating film can be measured by interferometry. Externally imposed oscillations change the shape of the film, leading to dynamic interference fringes that are recorded with a high-speed CCD camera. We propose a spatiotemporal analysis of the interference patterns based on the regularized phase-tracker method. This well-known method minimizes a cost function to estimate the absolute phase of a single element in the interferogram. A proper scanning method along all elements of the interferogram is necessary to avoid phase estimation errors that will propagate throughout the entire continuous phase image of interest. The scanning method we propose traces along contours of constant phase in the interferogram and does not require segmentation of the interferogram in dark and bright fringes. Results in the form of dynamic height profiles of droplets under excitation obtained by this method are presented. © 2005 Optical Society of America
机译:通过在视在接触区域内连续供应润滑气体膜,使非润湿液滴的表面与固体表面分离。在某些条件下,例如施加外部激励力,气膜厚度可以减小到分子间力导致液滴润湿表面的水平。润滑膜的厚度可以通过干涉法进行测定。外部施加的振动会改变胶片的形状,从而导致动态干涉条纹,并由高速CCD相机记录下来。我们提出基于正则相位跟踪器方法的干扰模式的时空分析。该众所周知的方法使估计干涉图中的单个元素的绝对相位的成本函数最小化。沿干涉图所有元素的正确扫描方法对于避免相位估计误差很有必要,该误差会在整个感兴趣的连续相位图像中传播。我们提出的扫描方法是沿着干涉图中的恒定相位轮廓走线,不需要在暗色和亮色条纹中对干涉图进行分割。给出了通过该方法在激发下液滴动态高度分布的形式的结果。 &复制; 2005年美国眼镜学会

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