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Control on Surface Plasmon Polaritons Propagation Properties by Continuously Moving a Nanoparticle along a Silver Nanowire Waveguide

机译:通过沿银纳米线波导连续移动纳米粒子控制表面等离激元极化子的传播特性

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摘要

Surface plasmon polaritons (SPPs)-based nanowire waveguides possess potential applications for nanophotonic circuits. Precise control on the propagation of SPPs in metal nanowires is thus of significant importance. In this work, we report the control on SPPs propagation properties by moving a silver nanoparticle (Ag NP) along a silver nanowire (Ag NW). The emission intensity at NP can be attenuated to about 25% of the maximum emission value with increasing the distance between excitation end and NP. When NP is gradually moved away from excitation end, the intensity of emission light at Ag NP shows an exponential decay with a superposition of wavy appearance, while the emission at NW end is almost a constant value. It is found that the former is related to the local SPPs field distribution in NW, and the latter is dependent on the distance between excitation end and NW terminal. Moreover, the propagation loss in Ag NP-NW structure has been investigated. Our experiments demonstrate the important role of NP location in NW-based waveguides and provide an effective method of tuning scattering light in NW, which is instructive to design the future specialized function of SPPs-based nanophotonic circuits and devices.
机译:基于表面等离子体激元极化子(SPPs)的纳米线波导在纳米光子电路中具有潜在的应用。因此,精确控制金属纳米线中SPP的传播非常重要。在这项工作中,我们报告了通过沿银纳米线(Ag NW)移动银纳米粒子(Ag NP)来控制SPP传播特性。随着激励端与NP之间距离的增加,NP处的发射强度可以衰减到最大发射值的25%左右。当NP逐渐从激发端移开时,Ag NP处的发射光强度呈指数衰减,呈波浪形叠加,而NW端的发射几乎恒定。发现前者与西北地区的局部SPPs场分布有关,而后者则取决于激励端与西北地区之间的距离。此外,已经研究了Ag NP-NW结构中的传播损耗。我们的实验证明了NP定位在基于NW的波导中的重要作用,并提供了一种有效的方法来调整NW中的散射光,这对于设计未来基于SPPs的纳米光子电路和器件的特殊功能具有指导意义。

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