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Phase-sensitive and fast-scanning laser probe system for radio frequency surface/bulk acoustic wave devices

机译:用于射频表面/体声波设备的相敏和快速扫描激光探针系统

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This paper reviews a phase-sensitive and fast-scanning laser probe system developed by the authors' group for the diagnosis of radio frequency (RF) surface and bulk acoustic wave (SAW/BAW) devices. The system is based on the Sagnac interferometer, which is insensitive to low frequency vibration. This feature allows us to maximize the scanning speed without sacrificing the signal-to-noise ratio of the measurement. It is demonstrated that high quality two-dimensional (2D) image of SAW/BAW field patterns can be captured in minutes order. Currently the maximum applicable frequency is 6 GHz. Because of the phase sensitivity, the measured field in the space domain is readily converted into the wavenumber domain by the 2D Fourier Transform.
机译:本文回顾了由作者小组开发的一种相敏和快速扫描激光探针系统,用于诊断射频(RF)表面和体声波(SAW / BAW)设备。该系统基于Sagnac干涉仪,对低频振动不敏感。此功能使我们能够在不牺牲测量信噪比的情况下最大化扫描速度。结果表明,可以以分钟为单位捕获SAW / BAW场模式的高质量二维(2D)图像。当前,最大适用频率是6 GHz。由于相位敏感性,空间域中的测量场很容易通过2D傅里叶变换转换为波数域。

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