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一种用于飞秒激光光谱分辨干涉测量的改进数据处理算法

An Improved Data Processing Algorithm for Spectrally Resolved Interferometry Using a Femtosecond Laser.

作者信息

Liu Tao, Matsukuma Hiraku, Suzuki Amane, Sato Ryo, Gao Wei

机构信息

Precision Nanometrology Laboratory, Department of Finemechanics, Tohoku University, Sendai 980-8579, Japan.

出版信息

Sensors (Basel). 2024 Apr 30;24(9):2869. doi: 10.3390/s24092869.

Abstract

Spectrally resolved interferometry utilizing a femtosecond laser is widely employed for absolute distance measurement. However, deviations in the output time pulse of the conventional algorithm through inverse Fourier transform are inevitable. Herein, an improved data processing algorithm employing a time-shifting parameter is proposed to improve the accuracy of spectrally resolved interferometry. The principle of the proposed time-shifting algorithm is analyzed theoretically after clarifying the deviation source of the conventional algorithm. Simulation and experimental work were conducted to indicate the improvement in the accuracy of the output absolute distance. The results demonstrated that the proposed algorithm could reduce the deviation of output distances towards the reference values, reaching 0.58 μm by half compared to the conventional algorithm. Furthermore, the measurement uncertainty was evaluated using the Guide to the Expression of Uncertainty in Measurement (GUM), resulting in an expanded uncertainty of 0.71 μm with a 95% confidence.

摘要

利用飞秒激光的光谱分辨干涉测量法被广泛用于绝对距离测量。然而,通过逆傅里叶变换的传统算法在输出时间脉冲上存在偏差是不可避免的。在此,提出一种采用时移参数的改进数据处理算法,以提高光谱分辨干涉测量法的精度。在明确传统算法的偏差源后,从理论上分析了所提出的时移算法的原理。进行了仿真和实验工作,以表明输出绝对距离精度的提高。结果表明,所提出的算法能够减少输出距离相对于参考值的偏差,与传统算法相比偏差减半,达到0.58μm。此外,使用《测量不确定度表示指南》(GUM)对测量不确定度进行了评估,在95%置信度下扩展不确定度为0.71μm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b46/11086063/b9045ce9b355/sensors-24-02869-g001.jpg

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