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Adaptive acoustic imaging using aberration correction in difficult materials

机译:在困难材料中使用像差校正的自适应声像

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This paper describes the key technological developments in the design of an adaptive optical scanning acoustic microscope. Adaptation is a key technological advance because it enables the microscope to correct for the deleterious effects of the material micro structure, and gain robust instrument performance on a wide range of samples. The two important requirements for the instrument are a multi-channel acoustic wavefront detector to measure the aberration in the acoustic wavefront, and a highly adaptive acoustic source to correct for the effects of aberration. As well as describing the novel aspects of the instrument that allow it to adapt, we present experimental surface acoustic wave images acquired by the instrument that indicate the degree of performance improvement that can be achieved when adaptation is used to correct for material aberration.
机译:本文介绍了自适应光学扫描声显微镜设计中的关键技术发展。适应是一项关键的技术进步,因为它使显微镜能够校正材料微观结构的有害影响,并在各种样品上获得强大的仪器性能。该仪器的两个重要要求是:一个多通道声波阵面检测器,用于测量声波阵面的像差;以及一个高度自适应的声源,用于校正像差的影响。除了描述仪器可以适应的新颖方面之外,我们还展示了仪器获得的实验性表面声波图像,这些图像表明当使用适应性校正材料像差时可以实现的性能改善程度。

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