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Dynamic measurement of thickness distribution in a soap film by using a phase-modulated large lateral shearing interferometer

机译:通过使用相位调制的大横向剪切干涉仪动态测量肥皂膜中的厚度分布

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Accurate measurement of soap film thickness distribution is a difficult and challenging task. In this paper, dynamic thickness distributions of a soap film were measured and visualized by using a phase-modulated large lateral shearing interferometer. A spatial light modulator (SLM) was utilized to modulate phase shifts of the incident laser, and film phases wrapped between 0 and $2pi$ were calculated from a least square method. The continuities of soap film thickness in space and time were adopted to obtain precise phase distributions, and then thickness distributions were retrieved. During the experiment, film thickness distributions were reconstructed at a rate of about 12 ms per frame, and the entire process from the initial stage of the soap film formation to rupture was recorded by a high-speed camera. In this process, the overall thickness of the soap film became thinner and the absolute values of thickness gradient decreased, which can be explained by the drainage effect caused by gravity.
机译:精确测量肥皂膜厚度分布是一个困难和具有挑战性的任务。在本文中,通过使用相位调制的大横向剪切干涉仪测量和可视化肥皂膜的动态厚度分布。使用空间光调制器(SLM)来调制入射激光的相移,并且在0和0之间包裹的薄膜阶段 $ 2 pi $ 由最小二乘法计算。采用空间和时间的肥皂膜厚度的连续性来获得精确的相分布,然后检索厚度分布。在实验期间,以每帧约12ms的速率重建膜厚度分布,并且通过高速相机记录从肥皂膜形成初始阶段的整个过程。在该过程中,肥皂膜的总厚度变得更薄,并且厚度梯度的绝对值降低,这可以通过引起的引起的排水效果来解释。

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