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Design of Infrared SPR Sensor Based on Bimetallic Nanowire Gratings on Plastic Optical Fiber Surface

机译:塑料光纤表面基于双金属纳米线光栅的红外SPR传感器设计

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摘要

In this paper, a bilayer metallic grating with pitch of m on the flank of a cylindrical plastic optical fiber was proposed as a novel optical sensor. Surface plasmon resonance excited by this structure for refractive index sensing is investigated by finite difference time domain methods. A theoretical sensitivity of 643.75 nm/RIU is obtained, where the wavelength of the resonant sharp dip is obviously shifted from 1.398 m to 1.501 m for surrounding refractive index increased from 1.33 to 1.49. Several factors which affect the accuracy of the device, such as the polarization state of the incident light, grating pitch, and refractive index of the sensing medium, are discussed. The successful fabrication of the grating indicates the feasibility of the devices. The sensor is expected to have potential applications in the chemical, biomedical, environmental safety, and food safety industries as well as in many other aspects.
机译:在本文中,提出了一种在圆柱形塑料光纤的侧面上节距为m的双层金属光栅作为新型光学传感器。通过有限差分时域方法研究了这种结构激发的表面等离子体共振,用于折射率传感。获得的理论灵敏度为643.75 nm / RIU,其中谐振尖峰的波长明显从1.398 m转移到1.501 m,而周围的折射率从1.33增加到1.49。讨论了影响设备精度的几个因素,例如入射光的偏振状态,光栅间距和感测介质的折射率。光栅的成功制造表明该装置的可行性。该传感器有望在化学,生物医学,环境安全和食品安全行业以及许多其他方面具有潜在的应用。

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