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Acoustic field of focused bulk waves generated by phase velocity scanning of laser interference fringes

机译:激光干涉条纹相速扫描产生的聚焦散热波的声学领域

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摘要

In conventional methods of laser ultrasound, the efficiency, mode - selectivity and directionality are insufficient for precise measurements. To overcome these difficulties, phase velocity scanning (PVS) was proposed, and a single - mode, high frequency unidirectional ultrasound was efficiently generated by the scanning interference fringes (SIF) approach. In this paper, as a novel extension of the SIF approach, a converging SIF (C - SIF) is proposed to focus a bulk acoustic wave (BAW) with a large amplitude. C - SIF is formed by intersecting a focused laser beam and a collimated beam with different frequencies on a specimen, and consists of concentric circles scanned into the center with scanning velocities faster for inner circles. Focusing of a 110 MHz BAW is verified using second harmonic waves of a Q - switched Nd:YAG laser and an Al specimen. It was confirmed that the focal point of the focused BAW was controllable by changing the defocus length of the focused laser beam on a specimen.
机译:在传统的激光超声方法中,效率,模式 - 选择性和方向性不足以精确测量。为了克服这些困难,提出了相速扫描(PVS),并且通过扫描干扰条纹(SIF)方法有效地产生单模高频单向超声。在本文中,作为SIF方法的新颖延伸,提出了一种聚合SIF(C-SIF),以将散装声波(BAW)聚焦,具有大的幅度。 C-SIF通过与样品上的聚焦激光束和具有不同频率的准直光束交叉形成,并且由扫描到中心的同心圆组成,内部圆的扫描速度更快。使用Q开关ND:YAG激光器和Al样本的二次谐波验证110MHz BAW的聚焦。确认,通过将聚焦激光束的散焦长度改变在样本上的散焦长度来控制,通过改变聚焦凸块的焦点。

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