首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Mode couplings and elasto-optic effects study in a proposed mechanical microperturbed multimode optical fiber sensor
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Mode couplings and elasto-optic effects study in a proposed mechanical microperturbed multimode optical fiber sensor

机译:提出的机械微扰动多模光纤传感器中的模式耦合和弹光效应研究

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A step index multimode optical fiber with a perturbation on a micrometer scale, inducing a periodic deformation of the fiber section along its propagation axis, is theoretically investigated. The studied microperturbation is mechanically achieved using two microstructured jaws squeezing the straight fiber. As opposed to optical fiber microbend sensors, the optical axis of the proposed transducer is not bended; only the optical fiber section is deformed. Further, the strain applied on the fiber produces a periodical elliptical modification of the core and a modulation of the index of refraction. As a consequence of the micrometer scale perturbation period, the resulting mode coupling occurs directly between guided and radiated modes. To simulate the transmission induced by these kinds of perturbations, simplified models considering only total mode couplings are often used. In order to investigate the range of validity of this approximation, results are compared to the electromagnetic mode couplings rigorously computed for the first time, to our knowledge, with a large multimode fiber (more than 6000 linear polarized modes) using the Marcuse model. In addition, in order to have a more complete modeling of the proposed transducer, the anisotropic elasto-optic effects in the stressed multimode fiber are considered. In this way, the transmission of the microperturbed optical fiber transmission and, therefore, the behavior of the transducer are physically explained and its applications as a future stretching sensor are discussed.
机译:理论上研究了具有微米级扰动的阶跃折射率多模光纤,该光纤引起了光纤截面沿其传播轴的周期性变形。所研究的微扰是通过使用两个压缩直纤维的微结构夹爪以机械方式实现的。与光纤微弯曲传感器相反,所提出的换能器的光轴没有弯曲。只有光纤部分变形。此外,施加在纤维上的应变使纤芯产生周期性的椭圆形变化并产生折射率的调制。由于微米尺度的扰动周期,所产生的模式耦合直接发生在引导模式和辐射模式之间。为了模拟由这些扰动引起的传输,通常使用仅考虑全模耦合的简化模型。为了研究这种近似方法的有效范围,据我们所知,使用马尔库塞模型将结果与大型多模光纤(超过6000个线偏振模)首次严格计算出的电磁模耦合进行了比较。另外,为了对所提出的换能器进行更完整的建模,考虑了应力多模光纤中的各向异性弹光效应。以这种方式,从物理上解释了微扰光纤传输的传输以及因此的换能器的行为,并讨论了其作为未来拉伸传感器的应用。

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