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Probing liquid surface waves, liquid surface waves, liquid properties and liquid films with light diffraction

机译:用光衍射探测液体表面波,液体表面波,液体性质和液体膜

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摘要

Surface waves on liquids act as a dynamical phase grating for incident light. In this paper, we revisit the classical method of probing such waves (wavelengths of the order of mm) as well as inherent properties of liquids and liquid films on liquids, using optical diffraction. A combination of simulation and experiment is proposed to trace out the surface wave profiles in various situations (e.g. for one or more vertical, slightly immersed, electrically driven exciters). Subsequently, the surface tension and the spatial damping coefficient (related to viscosity) of a variety of liquids are measured carefully in order to gauge the efficiency of measuring liquid properties using this optical probe. The final set of results deal with liquid films where dispersion relations, surface and interface modes, interfacial tension and related issues are investigated in some detail, both theoretically and experimentally. On the whole, our observations and analysis seem to support the claim that this simple, low cost apparatus is capable of providing a wealth of information on liquids and liquid surface waves in a non-destructive way.
机译:液体上的表面波充当入射光的动态相位光栅。在本文中,我们将回顾使用光学衍射探测此类波(毫米级波长)以及液体和液体上的液膜固有特性的经典方法。提出了模拟和实验相结合的方法,以描绘出各种情况下的表面波轮廓(例如,对于一个或多个垂直,稍微浸入的电动激励器)。随后,仔细测量各种液体的表面张力和空间阻尼系数(与粘度有关),以评估使用此光学探头测量液体特性的效率。最后一组结果涉及液膜,其中在理论上和实验上都详细研究了分散关系,表面和界面模式,界面张力及相关问题。总体而言,我们的观察和分析似乎支持这种简单,低成本的设备能够以非破坏性方式提供有关液体和液体表面波的大量信息的说法。

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