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基于高灵敏度选择性涂层光子晶体光纤的表面等离子体传感器。

Highly sensitive selectively coated photonic crystal fiber-based plasmonic sensor.

作者信息

Rifat Ahmmed A, Haider Firoz, Ahmed Rajib, Mahdiraji Ghafour Amouzad, Mahamd Adikan F R, Miroshnichenko Andrey E

出版信息

Opt Lett. 2018 Feb 15;43(4):891-894. doi: 10.1364/OL.43.000891.

Abstract

Highly sensitive and miniaturized sensors are highly desirable for real-time analyte/sample detection. In this Letter, we propose a highly sensitive plasmonic sensing scheme with the miniaturized photonic crystal fiber (PCF) attributes. A large cavity is introduced in the first ring of the PCFs for the efficient field excitation of the surface plasmon polariton mode and proficient infiltration of the sensing elements. Due to the irregular air-hole diameter in the first ring, the cavity exhibits the birefringence behavior which enhances the sensing performance. The novel plasmonic material gold has been used considering the chemical stability in an aqueous environment. The guiding properties and the effects of the sensing performance with different parameters have been investigated by the finite element method, and the proposed PCFs have been fabricated using the stack-and-draw fiber drawing method. The proposed sensor performance was investigated based on the wavelength and amplitude sensing techniques and shows the maximum sensitivities of 11,000 nm/RIU and 1,420  RIU, respectively. It also shows the maximum sensor resolutions of 9.1×10 and 7×10  RIU for the wavelength and amplitude sensing schemes, respectively, and the maximum figure of merits of 407. Furthermore, the proposed sensor is able to detect the analyte refractive indices in the range of 1.33-1.42; as a result, it will find the possible applications in the medical diagnostics, biomolecules, organic chemical, and chemical analyte detection.

摘要

对于实时分析物/样品检测而言,高度灵敏且小型化的传感器是非常理想的。在本信函中,我们提出了一种具有小型化光子晶体光纤(PCF)特性的高灵敏度等离子体传感方案。在光子晶体光纤的第一环中引入一个大的腔体,用于表面等离子体激元模式的高效场激发以及传感元件的充分渗透。由于第一环中气孔直径不规则,该腔体呈现出双折射行为,从而增强了传感性能。考虑到在水环境中的化学稳定性,使用了新型等离子体材料金。通过有限元方法研究了不同参数下的导波特性以及对传感性能的影响,并采用堆叠拉拔光纤拉丝法制备了所提出的光子晶体光纤。基于波长和幅度传感技术对所提出的传感器性能进行了研究,结果表明其最大灵敏度分别为11,000 nm/RIU和1,420 RIU。对于波长和幅度传感方案,其最大传感器分辨率分别为9.1×10和7×10 RIU,最大品质因数为407。此外,所提出的传感器能够检测1.33 - 1.42范围内的分析物折射率;因此,它将在医学诊断、生物分子、有机化学和化学分析物检测中找到可能的应用。

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