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Application of phase-to-amplitude conversion technique to linear birefringence measurements

机译:相-幅转换技术在线性双折射测量中的应用

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摘要

A novel technique that measures the linear birefringence of crystal quartz within the configuration of a Soliel-Babinet compensator (SBC) is proposed. A characteristic of this technique is that phase retardation introduced by quartz is amplitude modulation (AM) instead of phase modulation (PM). The linear birefringence is measured regardless of the azimuth angle of the SBC and the orientation of the linear polarization laser beam. Compared with the single-wedge method, the SBC is similar to a parallel plate that allows for a wider range of refractive index of the test material to be measured. This proposed method uses a conventional amplitude demodulation method in conjunction with an optical heterodyne technique and a bandpass filter to produce a better signal-to-noise ratio. Although the SBC configuration is more complex than a single element, the independence of azimuth angle and the orientation of the linear polarized laser beam can enhance the sensitivity of the linear birefringence measurement.
机译:提出了一种在Soliel-Babinet补偿器(SBC)的配置下测量晶体石英的线性双折射的新技术。该技术的一个特点是石英引入的相位延迟是幅度调制(AM)而不是相位调制(PM)。线性双折射的测量与SBC的方位角和线性偏振激光束的方向无关。与单楔方法相比,SBC类似于平行板,可以测量待测材料的更大范围的折射率。该提议的方法结合了光学外差技术和带通滤波器使用常规的幅度解调方法,以产生更好的信噪比。尽管SBC的配置比单个元素要复杂,但是方位角和线性偏振激光束方向的独立性可以提高线性双折射测量的灵敏度。

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    《Applied optics》 |2003年第10期|共7页
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