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Plasmon resonances of gold nanoparticles incorporated inside an optical fibre matrix

机译:掺入光纤基质中的金纳米颗粒的等离子体共振

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Metallic nanoparticles were incorporated into the core of standard telecommunication grade optical fibres. This creates a simple, yet robust, platform which can be used to investigate the properties of nanoparticles, for sensing, spectroscopy, and optical switching applications. The optical response of gold nanoparticles embedded in the optical fibre matrix was evaluated as a function of temperature and the use of the structure as an inline fibre-optic temperature sensor is described. A redshift in the localized surface plasmon (LSP) resonance related peak, as well as broadening of the plasmon resonance, was observed upon increasing the temperature of the nanoparticle containing fibre. The shift and broadening of the plasmon resonance were attributed to the temperature dependence of dielectric constants of metallic nanoparticles and the silica matrix and to plasmon-phonon interactions.
机译:将金属纳米颗粒掺入标准电信级光纤的芯中。这创建了一个简单而强大的平台,可用于研究纳米粒子的特性,用于传感,光谱学和光学开关应用。评估了嵌入在光纤基质中的金纳米颗粒的光学响应随温度的变化,并描述了该结构作为在线光纤温度传感器的用途。随着含纳米颗粒纤维温度的升高,观察到局部表面等离激元(LSP)共振相关峰的红移以及等离激元共振的加宽。等离子体激元共振的移动和加宽归因于金属纳米颗粒和二氧化硅基质的介电常数的温度依赖性以及等离子体激元-声子相互作用。

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