Wang Chih-Feng, Valencia-Acuna Pavel, Krayev Andrey V, El-Khoury Patrick Z
Physical Sciences Division, Pacific Northwest National Laboratory, Richland, Washington 99352, United States.
Horiba Instruments, Inc., 359 Bel Marin Keys Blvd., Suite 18, Novato, California 94949, United States.
J Phys Chem Lett. 2024 Oct 10;15(40):10272-10277. doi: 10.1021/acs.jpclett.4c02077. Epub 2024 Oct 3.
Broadband nanoextinction images recorded in tip-enhanced optical spectroscopy geometry track the 3D topography of a single layer of WS on Au substrate. The described nano-optical method is complementary to conventional atomic force microscopy and offers additional information about the buried material-metal interface that is not accessible using conventional topographic imaging. Beyond 3D optical imaging, we observe large variations in the junction plasmon resonance on the nanoscale. The latter is important to understand and account for in tip-enhanced Raman and photoluminescence studies that target low-dimensional materials specifically. Our observations and (coherent) optical scattering-based method are also relevant to emerging efforts aimed at exploring strong coupling and Fano interferences in hybrid plasmonic-low dimensional quantum material systems.
在针尖增强光学光谱几何结构中记录的宽带纳米消光图像追踪了金衬底上单层WS的三维形貌。所描述的纳米光学方法是对传统原子力显微镜的补充,并提供了有关掩埋材料-金属界面的额外信息,而这些信息是传统形貌成像无法获取的。除了三维光学成像外,我们还观察到纳米尺度上结等离子体共振的巨大变化。后者对于专门针对低维材料的针尖增强拉曼和光致发光研究中的理解和解释很重要。我们的观察结果和基于(相干)光散射的方法也与旨在探索混合等离子体-低维量子材料系统中的强耦合和法诺干涉的新兴研究相关。