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Multiple surface-plasmon resonance in uniform-waist tapered optical fibers with an asymmetric double-layer deposition

机译:具有不对称双层沉积的均匀腰锥形光纤中的多表面等离子体共振

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摘要

Novel devices consisting of uniform-waist tapered optical fibers with asymmetric double-layer (metal plus dielectric) depositions have been recently proposed as refractive-index sensors. We study the properties of light transmission by use of this kind of devices, and we specifically perform a detailed study of the generation of surface-plasma waves in the structures. We show that multiple surface plasmons are excited for specific combinations of the constructive parameters of the devices and for specific ranges of the refractive index of the surrounding medium. The behavior also depends on the wavelengh and the state of polarization of the incident light. The use of uniform-waist tapers allows for control of constructive parameters and an increase in the interaction length with the outer medium. We show how the plasmons are excited in the region of the taper waist by a coupling with the cladding modes gUided in that area. This characterization shows the importance of the presence of a dielectric layer for selection of the operating range of the device. The results are useful for the design of new sensors.
机译:最近已经提出了由具有不对称双层(金属加电介质)沉积的均匀腰锥形光纤组成的新型装置作为折射率传感器。我们使用这种设备研究光传输的特性,并专门对结构中表面等离子波的产生进行详细的研究。我们显示,对于设备的构造参数的特定组合和周围介质的特定折射率范围,多个表面等离子体激元被激发。该行为还取决于波长和入射光的偏振状态。均匀腰部锥度的使用允许控制构造参数并增加与外部介质的相互作用长度。我们展示了如何通过与在该区域中引导的包层模式耦合而在锥状腰部区域激发等离子体激元。该特征表明存在介电层对于选择器件的工作范围的重要性。结果对于设计新传感器很有用。

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