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Focused Ultrasonic Beam Behavior at a Stress-Free Boundary and Applicability for Measuring Nonlinear Parameter in a Reflection Mode

机译:在无应力边界处的聚焦超声波束行为和用于测量反射模式下非线性参数的适用性

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In this work, we employ a focused beam theory to modify the phase reversal at the stress-free boundary, and consequently enhance the second harmonic generation during its back-propagation toward the initial source position. We first confirmed this concept through experiment by using a spherically focused beam at the water-air interface, and measuring the reflected second harmonic and comparing with a planar wave reflected from the same stress-free or a rigid boundary. In order to test the feasibility of this idea for measuring the nonlinearity parameter of solids in a reflection mode, a focused nonlinear ultrasonic beam is modeled for focusing at and reflection from a stress-free boundary. A nonlinearity parameter expression is then defined together with diffraction and attenuation corrections.
机译:在这项工作中,我们采用聚焦光束理论来修改无应力边界处的相位反转,从而在其背部传播朝向初始源位置增强第二谐波产生。我们首先通过在水 - 空气界面处使用球形聚焦的光束来通过实验确认这一概念,并测量反射的第二谐波并与从相同的无应力或刚性边界反射的平面波进行比较。为了测试在反射模式中测量固体的非线性参数的该想法的可行性,将聚焦的非线性超声波束建模用于聚焦和从无应力边界的反射。然后将非线性参数表达式与衍射和衰减校正一起定义。

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