Mode field diameter measurement of single mode fiber using Bessel function fitting method based on variable aperture in far field

Q3 Engineering 光电工程 Pub Date : 2021-04-15 DOI:10.12086/OEE.2021.200308
H. Yue, Xiang Huazhong, Zhao Renyan, Tu Jiankun, Zheng Gang
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引用次数: 1

Abstract

The mode field diameter is an important parameter of single-mode fiber, and the GB.15972.45-2008 recommends using the far-field variable aperture method to measure it. This paper analyzes the distribution of the propagating light field in a single-mode fiber. The mode behavior of the light field is the solution of the Helmholtz equation, which in theory should satisfy the Bessel function. In this regard, a method using Bessel function to fit the optical field distribution of the fiber based on the far-field variable aperture method is proposed, and the mode field diameter is calculated from the fitted mode field distribution curve. Compared with the commonly used far-field variable aperture method, when the measurement data is normal, this method has the same measurement accuracy. When there are errors in the measurement data, this method can still ensure the stability and accuracy of the measurement results.
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基于远场变孔径贝塞尔函数拟合方法的单模光纤模场直径测量
模场直径是单模光纤的重要参数,GB.15972.45-2008建议采用远场变孔径法测量模场直径。本文分析了单模光纤中传播光场的分布。光场的模态行为是亥姆霍兹方程的解,它在理论上应该满足贝塞尔函数。为此,提出了一种基于远场变孔径法的利用贝塞尔函数拟合光纤光场分布的方法,并根据拟合后的模场分布曲线计算模场直径。与常用的远场变孔径法相比,在测量数据正常情况下,该方法具有相同的测量精度。当测量数据存在误差时,该方法仍能保证测量结果的稳定性和准确性。
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光电工程
光电工程 Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
0.00%
发文量
6622
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