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3D Finite Element Model for Writing Long-Period Fiber Gratings by CO2 Laser Radiation

机译:通过CO2激光辐射写入长周期光纤光栅的3D有限元模型

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摘要

In the last years, mid-infrared radiation emitted by CO2 lasers has become increasing popular as a tool in the development of long-period fiber gratings. However, although the development and characterization of the resulting sensing devices have progressed quickly, further research is still necessary to consolidate functional models, especially regarding the interaction between laser radiation and the fiber's material. In this paper, a 3D finite element model is presented to simulate the interaction between laser radiation and an optical fiber and to determine the resulting refractive index change. Dependence with temperature of the main parameters of the optical fiber materials (with special focus on the absorption of incident laser radiation) is considered, as well as convection and radiation losses. Thermal and residual stress analyses are made for a standard single mode fiber, and experimental results are presented.
机译:在过去的几年中,CO2激光器发出的中红外辐射作为开发长周期光纤光栅的一种工具变得越来越流行。但是,尽管最终的传感设备的开发和表征已经迅速发展,但仍需要进一步的研究来巩固功能模型,特别是关于激光辐射与纤维材料之间相互作用的模型。在本文中,提出了一个3D有限元模型,以模拟激光辐射和光纤之间的相互作用并确定最终的折射率变化。考虑到光纤材料的主要参数(特别着重于入射激光辐射的吸收)与温度的关系,以及对流和辐射损耗。对标准单模光纤进行了热应力和残余应力分析,并给出了实验结果。

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