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Measurement of the mechanical amplitude and phase of transient surface acoustic waves using double-pulsed TV holography and the spatial Fourier transform method

机译:使用双脉冲电视全息术和空间傅里叶变换法测量瞬态表面声波的机械振幅和相位

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摘要

We present a technique to calculate the mechanical amplitude and phase of an ultrasonic plane wavefield of nanometric amplitude that propagates on a surface. Our aim is to detect perturbations of the initially smooth wavefronts that indicate the presence of flaws in the material. We use bursts of Rayleigh waves and a double-pulsed TV Holography system that records two correlograms separated down to 1.5 microseconds. The phases of the correlograms are calculated separately using the spatial Fourier transform method (SFTM), and subtracted. In the resultant phase map, the field of instantaneous displacements of the surface (that comprises several periods of the surface acoustic wave) acts as a modulated spatial carrier, now related to the mechanical phase and amplitude, that are extracted applying the SFTM again.
机译:我们提出一种技术来计算在表面传播的纳米振幅的超声平面波场的机械振幅和相位。我们的目的是检测表明材料中存在缺陷的初始光滑波前的扰动。我们使用瑞利波突发和双脉冲电视全息照相系统,该系统记录了两个相距1.5微秒的相关图。使用空间傅里叶变换法(SFTM)分别计算相关图的相位,然后将其相减。在最终的相位图中,表面的瞬时位移场(包括表面声波的多个周期)充当调制的空间载体,现在与机械相位和振幅有关,并再次使用SFTM提取。

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