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Generation of sub-microsecond quasi-unipolar pressure pulses

机译:生成次微秒准单压脉冲

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摘要

We present a method to generate sub-microsecond quasi-unipolar pressure pulses. Our approach is based on the laser irradiation of a thin copper wire submerged in water. The acoustic waveforms were recorded using two different, well characterized, wideband detection techniques: piezoelectric and optical interferometry. The results show that the irradiated target behaves as an omnidirectional source. Moreover, the peak pulse pressure linearly depends on the laser fluence and the source size. From the results, we propose an empirical equation for the spatial and temporal profile of the pressure pulse. The method has several advantages: ease of implementation, high repeatability, wide ultrasonic bandwidth and quasi-unipolar time profile. These features lead to potential applications of this acoustic source in ultrasonic characterization such as transducer systems, materials or passive devices.
机译:我们介绍了一种生成亚微秒准单压脉冲的方法。 我们的方法是基于浸入水中薄铜线的激光照射。 使用两种不同,特征的宽带检测技术进行记录声波形:压电和光学干涉测量。 结果表明,照射的目标表现为全向源。 此外,峰值脉冲压力线性地取决于激光量和源极尺寸。 从结果中,我们提出了一种压力脉冲的空间和时间轮廓的经验方程。 该方法具有几个优点:易于实现,高可重复性,超声波带宽和准单极性时间谱。 这些特征导致该声源在超声波表征中的潜在应用,例如换能器系统,材料或无源器件。

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