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Using laser Doppler vibrometry to measure capillary surface waves on fluid-fluid interfaces

机译:使用激光多普勒振动法测量流体界面上的毛细管表面波

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摘要

Capillary wave phenomena are challenging to study, especially for microfluidics where the wavelengths are short, the frequencies are high, and the frequency distribution is rarely confined to a narrow range, let alone a single frequency. Those that have been studying Faraday capillary waves generated by vertical oscillation have chosen to work at larger scales and at low frequencies as a solution to this problem, trading simplicity in measurement for issues with gravity, boundary conditions, and the fidelity of the subharmonic capillary wave motion. Laser Doppler vibrometry using a Mach–Zehnder interferometer is an attractive alternative: The interface’s motion can be characterized at frequencies up to 40 MHz and displacements of as little as a few tens of picometers.
机译:毛细管现象很难研究,特别是对于波长短,频率高,频率分布很少限制在窄范围内的微流体,更不用说单个频率了。那些研究垂直振动产生的法拉第毛细管波的人选择了在较大的规模和低频下工作的解决方案,以解决重力,边界条件和亚谐波毛细管波保真度的测量问题运动。使用Mach–Zehnder干涉仪的激光多普勒振动测定法是一种有吸引力的选择:可以在高达40 MHz的频率和仅几十皮安的位移下表征界面的运动。

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