Performance of concave transducers in acoustic microscopy

Yasuhiro Sugawara, J. Kushibiki, N. Chubachi
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引用次数: 4

Abstract

The performance of a scanning reflection acoustic microscope system using concave transducers has been investigated numerically and experimentally. V(z) characteristics that contain information about leaky surface acoustic waves (LSAWs) at the water/sample boundary can be used to analyze the performance of the system. Numerical analyses of V(z) curves are made via the transfer function of the system using a concave transducer based on field theory, taking a fused quartz as a typical sample. The experiments are performed at a frequency of 375 MHz. It is revealed that the amplitude response of the V(z) curve contains a rapid periodic variation in the defocus region that is not directly related to the propagation properties of LSAW, whereas the phase response of the V(z) curve depends strongly on the propagation properties of LSAW.<>
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声学显微镜中凹形换能器的性能
本文对采用凹形换能器的扫描反射声显微镜系统的性能进行了数值和实验研究。V(z)特性包含水/样品边界处泄漏表面声波(LSAWs)的信息,可用于分析系统的性能。以熔融石英为典型样品,采用基于场理论的凹形换能器,通过系统的传递函数对V(z)曲线进行了数值分析。实验在375兆赫的频率上进行。结果表明,V(z)曲线的幅值响应在离焦区域包含一个快速的周期性变化,这与LSAW的传播特性没有直接关系,而V(z)曲线的相位响应则强烈地依赖于LSAW的传播特性。
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