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Analysis of fiber Bragg gratings by a side-diffraction interference technique

机译:利用侧衍射干涉技术分析光纤布拉格光栅

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摘要

A new nondestructive, noncontact, and sensitive technique for fiber Bragg grating geometry and index-fault location measurements is presented. Two plane-wave probe laser beams are incident upon the grating from the side at angles that satisfy the Bragg-reflection condition. An interference pattern is formed behind the fiber between the first-order diffracted beam (from one probe beam) and the zero-order transmitted beam (from the second probe beam). The axial grating index modulation and the grating period are functions of the fringe visibility and the fringe period, respectively. The method is sensitive and is applicable even in the case of relatively weak gratings. Unchirped and chirped Bragg gratings have been studied with the proposed technique. We demonstrate accuracies of 1×10~(-4) for measurement of the index modulation and 0.01 nm for measurement of the period. As well as for the analysis of most already-fabricated gratings, this technique is useful for in situ analysis of a long fiber Bragg grating as such a grating is translated along its axis during the fabrication process.
机译:提出了一种新的用于光纤布拉格光栅几何形状和折射率故障位置测量的非破坏性,非接触性和灵敏技术。两个平面波探测激光束从侧面以满足布拉格反射条件的角度入射到光栅上。在光纤的一阶衍射光束(来自一个探测光束)和零级透射光束(来自第二探测光束)之间,在光纤后面形成了干涉图样。轴向光栅折射率调制和光栅周期分别是条纹可见度和条纹周期的函数。该方法灵敏并且即使在相对较弱的光栅的情况下也适用。利用提出的技术已经研究了无chi和chi布拉格光栅。我们证明了折射率调制的测量精度为1×10〜(-4),周期的测量精度为0.01 nm。除了分析大多数已经制造的光栅外,该技术还可用于长纤维布拉格光栅的原位分析,因为这样的光栅在制造过程中会沿其轴线平移。

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