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Laser probing system for the accurate detection of surface acoustic wave phase velocities

机译:激光探测系统,用于精确检测声表面波相速度

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Abstract: The present work demonstrates a high-resolution technique for the optical detection of the phase and amplitude of high frequency surface acoustic waves (SAWs). The test setup incorporates a mode-locked picosecond laser, harmonic mixing, and coherent detection, and it allows not only the measurement of the surface wave field but also the direct determination of the phase velocity. A measurement bandwidth in excess of 2 GHz is achieved. The maximum scan length was 4 cm. As a substrate, LiNbO$-3$/ has been used for the test measurements. Minimum detectable surface displacement and dynamic range were 1 pm/Hz$+$HLF$/ and 40 dB, respectively. The method enables the determination of the phase velocity with a resolution of 1.5 $DOT 10$+$MIN@5$/ in dependence of crystal cut, temperature, and frequency. An additional feature is that phase velocity values can be obtained with spatial resolution, i.e., velocity variation effects along the propagation path can be evaluated. We found that the assumption that the SAW velocity is constant across the whole device surface is not valid in general. !20
机译:摘要:本工作展示了一种用于光学检测高频表面声波(SAW)的相位和幅度的高分辨率技术。该测试装置结合了锁模皮秒激光器,谐波混合和相干检测,不仅可以测量表面波场,还可以直接确定相速度。实现了超过2 GHz的测量带宽。最大扫描长度为4厘米。作为基底,LiNbO 3-/已经用于测试测量。最小可检测表面位移和动态范围分别为1 pm / Hz $ + $ HLF $ /和40 dB。该方法使得能够根据晶体切割,温度和频率确定分辨率为1.5 $ DOT 10 $ + $ MIN @ 5 $ /的相速度。另一个特征是可以以空间分辨率获得相速度值,即可以评估沿传播路径的速度变化效应。我们发现,在整个器件表面上SAW速度恒定的假设通常无效。 !20

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