论文标题

单晶金血小板上表面等离子体极化子的定量近场表征

Quantitative near-field characterization of surface plasmon polaritons on monocrystalline gold platelets

论文作者

Casses, Laura N., Kaltenecker, Korbinian J., Xiao, Sanshui, Wubs, Martijn, Stenger, Nicolas

论文摘要

表面等离子体极化子(SPP)的亚波长度限制使其对各种应用(例如传感,光发电和太阳能转化)有吸引力。与干涉检测相关的近场显微镜可以可视化SPP的振幅和相位。但是,由于多个激发通道之间的干扰引起的复杂波模式,它们在反射构型中的全部定量表征具有挑战性。在这里,我们介绍了可见光谱范围内的大型单晶金血小板上SPP的近场测量。我们系统地研究了令人兴奋的光的入射角对原子力显微镜尖端发射的SPP的影响。我们发现,这些SPP的振幅和相位信号与其他信号相对于金血小板的边缘的其他信号最好地脱离了其他信号。此外,我们引入了一个简单的模型,以解释SPP振幅和相位剖面之间观察到的相移。使用此模型,通过隔离和拟合其远离血小板边缘的信号来检索尖端突出等离子体的波长和传播长度。我们的实验结果与使用金折射率值的理论模型非常吻合。提出的完全表征SPP复合波形的方法可以实现在可见波长下在不同材料中发生的极性子的定量分析。

The subwavelength confinement of surface plasmon polaritons (SPPs) makes them attractive for various applications such as sensing, light generation and solar energy conversion. Near-field microscopy associated with interferometric detection allows to visualize both the amplitude and phase of SPPs. However, their full quantitative characterization in a reflection configuration is challenging due to complex wave patterns arising from the interference between several excitation channels. Here, we present near-field measurements of SPPs on large monocrystalline gold platelets in the visible spectral range. We study systematically the influence of the incident angle of the exciting light on the SPPs launched by an atomic force microscope tip. We find that the amplitude and phase signals of these SPPs are best disentangled from other signals at grazing incident angle relative to the edge of the gold platelet. Furthermore, we introduce a simple model to explain the phase shift observed between the SPP amplitude and phase profiles. Using this model, the wavelength and propagation length of the tip-launched plasmons are retrieved by isolating and fitting their signals far from the platelets edges. Our experimental results are in excellent agreement with theoretical models using gold refractive index values. The presented method to fully characterize the SPP complex wavevector could enable the quantitative analysis of polaritons occurring in different materials at visible wavelengths.

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