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Detection of Interference Phase by Digital Computation of Quadrature Signals in Homodyne Laser Interferometry

机译:同相激光干涉法中正交信号的数字计算在干涉相位检测中的应用

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摘要

We have proposed an approach to the interference phase extraction in the homodyne laser interferometry. The method employs a series of computational steps to reconstruct the signals for quadrature detection from an interference signal from a non-polarising interferometer sampled by a simple photodetector. The complexity trade-off is the use of laser beam with frequency modulation capability. It is analytically derived and its validity and performance is experimentally verified. The method has proven to be a feasible alternative for the traditional homodyne detection since it performs with comparable accuracy, especially where the optical setup complexity is principal issue and the modulation of laser beam is not a heavy burden (e.g., in multi-axis sensor or laser diode based systems).
机译:我们提出了一种在零差激光干涉测量中干涉相提取的方法。该方法采用一系列计算步骤,以从来自由简单光电检测器采样的非偏振干涉仪的干扰信号中重建用于正交检测的信号。复杂度的折衷是使用具有频率调制功能的激光束。它是通过分析得出的,其有效性和性能已通过实验验证。该方法已被证明是传统零差检测的可行替代方法,因为它具有相当的精度,特别是在光学设置复杂性是主要问题并且激光束的调制不是沉重负担的情况下(例如,在多轴传感器或基于激光二极管的系统)。

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