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用于角速度传感的旋转光纤布拉格光栅环形谐振器。

Fiber Bragg grating ring resonators under rotation for angular velocity sensing.

作者信息

Campanella C E, De Leonardis F, Passaro V M N

出版信息

Appl Opt. 2015 May 20;54(15):4789-96. doi: 10.1364/AO.54.004789.

Abstract

In this paper we investigate the possibility of using hybrid resonators based on fiber Bragg grating ring resonators (FBGRRs) and π-shifted FBGRRs (i.e., defective FBGRRs) as rotation sensitive elements for gyroscope applications. In particular, we model the conventional fiber Bragg grating (FBG) with the coupled mode theory by taking into account how the Sagnac effect, induced by the rotation, modifies the eigenvalues, the photonic band gap, and the spectral response of the FBG. Then, on the basis of the FBG model under rotation conditions, the spectral responses of the FBGRR and π-FBGRR have been evaluated, confirming that the Sagnac effect manifests itself with a spectral shift of the eigensolutions. This physical investigation can be exploited for opening new ways in the optical gyroscope platforms.

摘要

在本文中,我们研究了基于光纤布拉格光栅环形谐振器(FBGRR)和π相移FBGRR(即缺陷型FBGRR)的混合谐振器作为陀螺仪应用中旋转敏感元件的可能性。具体而言,我们通过耦合模理论对传统光纤布拉格光栅(FBG)进行建模,同时考虑旋转引起的萨格纳克效应如何改变FBG的本征值、光子带隙和光谱响应。然后,基于旋转条件下的FBG模型,评估了FBGRR和π-FBGRR的光谱响应,证实萨格纳克效应通过本征解的光谱偏移表现出来。这种物理研究可用于开拓光学陀螺仪平台的新途径。

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