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首页> 外文期刊>IEEE sensors journal >Influence of the Sub-Peak of Secondary Surface Plasmon Resonance Onto the Sensing Performance of a D-Shaped Photonic Crystal Fibre Sensor
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Influence of the Sub-Peak of Secondary Surface Plasmon Resonance Onto the Sensing Performance of a D-Shaped Photonic Crystal Fibre Sensor

机译:次级表面等离子体谐振子峰值对D形光子晶体光纤传感器的感测性能的影响

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摘要

In this paper, we mainly investigate the sensing performance of a fabricable 6-fold D-shaped photonic crystal fibre sensor based on the surface plasmon resonance (SPR). Its resonance couplings between fundamental core mode and three surface plasmonic modes which have different electric filed distributions for analytes of various refractive indices have been studied in detail. We firstly observe two different types of SPRs, namely, 'dielectric like' resonance with low-loss peak and 'plasmon like' resonance with high-loss peak, by analysing the electric field distribution of the fibre modes. Then, we discuss the influence of the secondary SPR over the main SPR which is directly related to the limitation on the detection sensing range of the proposed sensor. In order to mitigate the adverse effect of the sub-peak of the secondary SPR on the sensor's sensing performance, we reduce the thickness of analyte's binding layer from 1500 nm to 500 nm. Thus, the sensing range of the proposed sensor can be tuned from 1.33 - 1.41 to 1.33 - 1.45 at the cost of a reduced maximum sensitivity from 7900 nm/RIU to 5300 nm/RIU. Owning to the simple structure design of the proposed sensor, we envisage that this highly sensitive D-shaped PCF-SPR sensor could be developed as a versatile and competitive instrument with a large and flexible refractive index detection range.
机译:在本文中,我们主要研究了基于表面等离子体共振(SPR)的可制造的6倍D形光子晶体光纤传感器的感测性能。本发明的基本核心模式和三种表面等离子体模式之间的共振联轴器已经详细研究了对各种折射率分析的不同电力归档分布。我们首先观察两种不同类型的SPR,即“电介质”,通过分析光纤模式的电场分布,与高损耗峰值的低损耗峰值和“等离子体相同”的共振。然后,我们讨论了次级SPR在主SPR上的影响,该SPR与所提出的传感器的检测感测范围的限制直接相关。为了减轻二次SCR对传感器感测性能的副峰的不利影响,我们将分析物的结合层的厚度从1500nm到500nm降低。因此,所提出的传感器的感测范围可以从1.33 - 1.41到1.33-1.45调谐,其成本从7900 nm / Riu到5300nm / Riu的最大最大敏感性降低。拥有所提出的传感器的简单结构设计,我们设想这种高度敏感的D形PCF-SPR传感器可以开发为具有大而柔性折射率检测范围的通用和竞争仪器。

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