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Research on FBG-based longitudinal-acousto-optic modulator with Fourier mode coupling method

机译:基于FBG的纵向声光调制器的傅里叶模式耦合方法研究

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Fourier mode coupling model was first applied to achieve the spectra property of a fiber Bragg grating (FBG)-based longitudinal-acousto-optic modulator. Compared with traditional analysis algorithms, such as the transfer matrix method, the Fourier mode coupling model could improve the computing efficiency up to 100 times with a guarantee of accuracy. In this paper, based on the theoretical analysis of this model, the spectra characteristics of the modulator in different frequencies and acoustically induced strains were numerically simulated. In the experiment, a uniform FBG was modulated by acoustic wave (AW) at 12 different frequencies. In particular, the modulator responses at 563 and 885.5 KHz with three different lead zirconate titanate (PZT) loads applied were plotted for illustration, and the linear fitting of experimental data demonstrated a good match with the simulation result. The acoustic excitation of the longitudinal wave is obtained using a conic silica horn attached to the surface of a shear-mode PZT plate paralleled to the fiber axis. This way of generating longitudinal AW with a transversal PZT may shed light on the optimal structural design for the FBG-based longitudinal-acousto-optic modulator.
机译:首先使用傅里叶模式耦合模型来实现基于光纤布拉格光栅(FBG)的纵向声光调制器的光谱特性。与传统的分析算法(如传递矩阵法)相比,傅里叶模式耦合模型可以将计算效率提高多达100倍,并且保证了准确性。本文在对该模型进行理论分析的基础上,数值模拟了调制器在不同频率和声致应变下的频谱特性。在实验中,通过声波(AW)在12个不同的频率上调制均匀的FBG。特别地,绘制了三种不同的锆钛酸铅(PZT)负载下在563和885.5 KHz处的调制器响应,以进行图解说明,并且实验数据的线性拟合表明与仿真结果非常吻合。使用与平行于纤维轴的剪切模式PZT板表面相连的圆锥形硅胶号角可获得纵波的声激发。产生具有横向PZT的纵向AW的这种方式可能会为基于FBG的纵向声光调制器的最佳结构设计提供启示。

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