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Adaptive heterodyne interferometer for ultrasonic NDE

机译:超声无损检测的自适应外差干涉仪

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In this paper, we present a heterodyne interferometer using photorefractive cubic crystal Bi_(12)SiO_(20)(BSO) in a two-wave mixing configuration. The combination of heterodyne detection with the photorefractive process results in a well proven nosie insensitive technique with a large etendue (ability to work on roguh surfaces). In our case, by using a low gain and fast time response PRC such as BSO, the low frequency (less than kHz) and large amplitude noise that creates decorrelation and large phase shift of the speckle signal can be compensated. The heterodyne technique allows automatic absolute calibration of the displacement.
机译:在本文中,我们提出了一种外差式干涉仪,它使用光折射立方晶体Bi_(12)SiO_(20)(BSO)在两波混合配置中。外差检测与光折射过程的结合导致了一种成熟的,对噪声不敏感的技术,该技术具有大的集光率(在鲁氏表面上工作的能力)。在我们的情况下,通过使用低增益和快速响应的PRC(例如BSO),可以补偿产生斑点信号的去相关和大相移的低频(小于kHz)和大幅度噪声。外差技术可以自动对位移进行绝对校准。

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