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Adaptive optical array receivers for detection of surface acoustic waves

机译:自适应光学阵列接收器,用于检测表面声波

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Adaptive interferometric detection systems based on two-wave mixing in photorefractive crystals have been configured as distributed optical receivers. The spatial distribution of the detection laser power on the sample surface is controlled by use of phase gratings and amplitude masks. The responses of point, line, array, and chirped optical receivers to propagating surface acoustic waves (SAW's) are discussed theoretically and demonstrated experimentally. It is shown that by use of different object beam footprints it is possible to configure adaptive holographic SAW receivers that are either broadband or narrow band and that are preferentially sensitive to SAW's propagating in given directions. The receivers also allow for the distribution of laser power over the sample, eliminating the excessive heating or surface damage that can occur in some materials when high power, point-focused, detection lasers are used.
机译:基于光折射晶体中两波混合的自适应干涉检测系统已配置为分布式光接收器。样品表面上检测激光功率的空间分布是通过使用相位光栅和振幅掩模来控制的。理论上讨论了点,线,阵列和chi光接收器对传播的表面声波(SAW)的响应,并进行了实验证明。结果表明,通过使用不同的物镜束足迹,可以配置宽带或窄带且优先对SAW在给定方向上传播敏感的自适应全息SAW接收机。接收器还允许在样品上分配激光功率,从而消除了在使用大功率点聚焦检测激光器时某些材料可能发生的过度加热或表面损坏。

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