Casses Laura N, Kaltenecker Korbinian J, Xiao Sanshui, Wubs Martijn, Stenger Nicolas
Opt Express. 2022 Mar 28;30(7):11181-11191. doi: 10.1364/OE.454740.
Near-field microscopy allows for visualization of both the amplitude and phase of surface plasmon polaritons (SPPs). However, their 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. 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 extract the wavelength and in particular the propagation length of the tip-launched plasmons. Our experimental results are in excellent agreement with our theoretical model. The presented method allows the quantitative analysis of polaritons occurring in different materials at visible wavelengths.
近场显微镜能够实现表面等离激元极化激元(SPPs)振幅和相位的可视化。然而,由于多个激发通道之间的干涉会产生复杂的波型,因此在反射配置下对其进行定量表征具有挑战性。在此,我们展示了在可见光范围内对大型单晶金薄片上的SPPs进行的近场测量。我们系统地研究了激发光入射角对原子力显微镜探针所激发的SPPs的影响。我们发现,相对于金薄片边缘,在掠入射角下,这些SPPs的振幅和相位信号最容易与其他信号区分开来。此外,我们引入了一个简单模型来提取探针激发的等离激元的波长,特别是传播长度。我们的实验结果与理论模型高度吻合。所提出的方法能够对可见光波长下不同材料中出现的极化激元进行定量分析。