Patoka Piotr, Ulrich Georg, Nguyen Ariana E, Bartels Ludwig, Dowben Peter A, Turkowski Volodymyr, Rahman Talat S, Hermann Peter, Kästner Bernd, Hoehl Arne, Ulm Gerhard, Rühl Eckart
Opt Express. 2016 Jan 25;24(2):1154-64. doi: 10.1364/OE.24.001154.
Nanoscale plasmonic phenomena observed in single and bi-layers of molybdenum disulfide (MoS(2)) on silicon dioxide (SiO(2)) are reported. A scattering type scanning near-field optical microscope (s-SNOM) with a broadband synchrotron radiation (SR) infrared source was used. We also present complementary optical mapping using tunable CO(2)-laser radiation. Specifically, there is a correlation of the topography of well-defined MoS(2) islands grown by chemical vapor deposition, as determined by atomic force microscopy, with the infrared (IR) signature of MoS(2). The influence of MoS(2) islands on the SiO(2) phonon resonance is discussed. The results reveal the plasmonic character of the MoS(2) structures and their interaction with the SiO(2) phonons leading to an enhancement of the hybridized surface plasmon-phonon mode. A theoretical analysis shows that, in the case of monolayer islands, the coupling of the MoS(2) optical plasmon mode to the SiO(2) surface phonons does not affect the infrared spectrum significantly. For two-layer MoS(2), the coupling of the extra inter-plane acoustic plasmon mode with the SiO(2) surface transverse phonon leads to a remarkable increase of the surface phonon peak at 794 cm(-1). This is in agreement with the experimental data. These results show the capability of the s-SNOM technique to study local multiple excitations in complex non-homogeneous structures.
报道了在二氧化硅(SiO₂)上的单层和双层二硫化钼(MoS₂)中观察到的纳米级等离子体现象。使用了配备宽带同步辐射(SR)红外光源的散射型扫描近场光学显微镜(s-SNOM)。我们还展示了使用可调谐CO₂激光辐射的互补光学映射。具体而言,通过原子力显微镜确定的化学气相沉积生长的明确定义的MoS₂岛的形貌与MoS₂的红外(IR)特征之间存在相关性。讨论了MoS₂岛对SiO₂声子共振的影响。结果揭示了MoS₂结构的等离子体特性及其与SiO₂声子的相互作用,导致杂化表面等离子体-声子模式增强。理论分析表明,在单层岛的情况下,MoS₂光学等离子体模式与SiO₂表面声子的耦合对红外光谱没有显著影响。对于双层MoS₂,额外的层间声学等离子体模式与SiO₂表面横向声子的耦合导致794 cm⁻¹处表面声子峰显著增加。这与实验数据一致。这些结果表明了s-SNOM技术研究复杂非均匀结构中局部多重激发的能力。