He Yue Jing
Opt Express. 2013 Oct 7;21(20):23498-510. doi: 10.1364/OE.21.023498.
In this study, a novel D-shaped localized surface plasmon resonance (LSPR) fiber sensor was introduced. The construction of this sensor involved etching of a single-mode fiber on the cladding layer and core layer, followed by plating using nano-metal strips. The design and calculations of the entire sensor were based on a numerical simulation method combining the finite element method (FEM) and the eigenmode expansion method (EEM). By using graphical representations of the algorithm results, the excitation of the LSPR was clearly observed. The finished D-shaped LSPR fiber sensor possesses several excellent properties, including a short length (2494.4301 μm), high resolution (approximately 35 dB), and high sensitivity (approximately 20183.333 nm/RIU). In addition, compared with LPG-SPR fiber sensor, the framework provides three advantages, namely, a fabrication process that is compatible with semiconductor fabrication, as well as the low-temperature cross-talk and high-temperature stability of surface grating.
在本研究中,引入了一种新型的D形局域表面等离子体共振(LSPR)光纤传感器。该传感器的构建包括在包层和芯层上蚀刻单模光纤,然后使用纳米金属条进行镀膜。整个传感器的设计和计算基于有限元法(FEM)和本征模展开法(EEM)相结合的数值模拟方法。通过算法结果的图形表示,可以清楚地观察到LSPR的激发。制成的D形LSPR光纤传感器具有几个优异的特性,包括短长度(2494.4301μm)、高分辨率(约35dB)和高灵敏度(约20183.333nm/RIU)。此外,与长周期光栅表面等离子体共振(LPG-SPR)光纤传感器相比,该结构具有三个优点,即制造工艺与半导体制造兼容,以及表面光栅的低温串扰和高温稳定性。