Moccia Massimo, Pisco Marco, Cutolo Antonello, Galdi Vincenzo, Bevilacqua Pierantonio, Cusano Andrea
Optoelectronic Division, Department of Engineering, University of Sannio, Corso Garibaldi 107, I-82100 Benevento, Italy.
Opt Express. 2011 Sep 26;19(20):18842-60. doi: 10.1364/OE.19.018842.
In this paper, we present the study of the acousto-optic behavior of underwater-acoustic sensors constituted by fiber Bragg gratings (FBGs) coated by ring-shaped overlays. Via full-wave numerical simulations, we study the complex opto-acousto-mechanical interaction among an incident acoustic wave traveling in water, the optical fiber surrounded by the ring shaped coating, and the FBG inscribed the fiber, focusing on the frequency range 0.5-30 kHz of interest for SONAR applications. Our results fully characterize the mechanical behavior of an acoustically driven coated FBG, and highlight the key role played by the coating in enhancing significantly its sensitivity by comparison with a standard uncoated configuration. Furthermore, the hydrophone sensitivity spectrum exhibits characteristic resonances, which strongly improve the sensitivity with respect to its background (i.e., away from resonances) level. Via a three-dimensional modal analysis, we verify that the composite cylindrical structure of the sensor acts as an acoustic resonator tuned at the frequencies of its longitudinal vibration modes. In order to evaluate the sensor performance, we also carry out a comprehensive parametric analysis by varying the geometrical and mechanical properties of the coating, whose results also provide a useful design tool for performance optimization and/or tailoring for specific SONAR applications. Finally, a preliminary validation of the proposed numerical analysis has been carried out through experimental data obtained using polymeric coated FBGs sensors revealing a good agreement and prediction capability.
在本文中,我们展示了对由涂覆有环形覆盖层的光纤布拉格光栅(FBG)构成的水下声学传感器的声光行为的研究。通过全波数值模拟,我们研究了在水中传播的入射声波、被环形涂层包围的光纤以及刻写在光纤中的FBG之间复杂的光 - 声 - 机械相互作用,重点关注声纳应用感兴趣的0.5 - 30 kHz频率范围。我们的结果全面表征了声学驱动的涂覆FBG的机械行为,并突出了涂层在与标准未涂覆配置相比时显著提高其灵敏度方面所起的关键作用。此外,水听器灵敏度谱呈现出特征共振,相对于其背景(即远离共振)水平,这极大地提高了灵敏度。通过三维模态分析,我们验证了传感器的复合圆柱形结构作为一个在其纵向振动模式频率上调谐的声学谐振器。为了评估传感器性能,我们还通过改变涂层的几何和机械性能进行了全面的参数分析,其结果也为特定声纳应用的性能优化和/或定制提供了有用的设计工具。最后,通过使用聚合物涂覆的FBG传感器获得的实验数据对所提出的数值分析进行了初步验证,结果显示出良好的一致性和预测能力。