首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Real-time phase measurement with a photorefractive novelty filter microscope
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Real-time phase measurement with a photorefractive novelty filter microscope

机译:用光折射新型滤光镜进行实时相位测量

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摘要

A photorefractive two-beam-coupling based novelty filter is sensitive to amplitude and phase changes. However, the phase sensitivity of this device has remained unexploited until now. In this paper we develop and demonstrate a method to overcome the effects of contour formation in novelty filter output and consequently employ the novelty filter as a quantitative real-time transient phase-measuring instrument. A microscope based on a two-beam-coupling novelty filter is implemented and is used for detecting as well as measuring phase changes introduced by moving homogeneous phase objects. The two-dimensional output from the microscope is analysed, and a method based on the intensity dependence of the photorefractive time constant is proposed to overcome the effects of contour formation in the context of real-time transient phase measurement. The phase transfer function of the novelty filter system is experimentally determined and a phase measurement resolution of at least λ/20 at 532 nm is achieved.
机译:基于光折射两光束耦合的新型滤波器对幅度和相位变化敏感。然而,该装置的相位灵敏度至今仍未得到开发。在本文中,我们开发并演示了一种克服轮廓形成在新颖滤波器输出中的影响的方法,并因此将新颖滤波器用作实时定量实时瞬态相位测量仪器。实现了一种基于两光束耦合新奇滤镜的显微镜,该显微镜用于检测和测量由移动均相物体引起的相变。分析了显微镜的二维输出,并提出了一种基于光折射时间常数的强度依赖性的方法,以克服实时瞬时相位测量中轮廓形成的影响。通过实验确定新颖性滤波器系统的相转移函数,并在532 nm处获得至少λ/ 20的相位测量分辨率。

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