Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Nano Lett. 2010 Jun 9;10(6):2251-6. doi: 10.1021/nl101352s.
A new technique is reported where by combining spatially and spectrally resolved scanning optical microscopy on single nanowire active waveguides, waveguide propagation loss and dispersion can be determined. The waveguide propagation loss spectra have been utilized to obtain insights into the optical absorption spectra of these unique nanostructured materials, which are modified in comparison to bulk materials. The propagation spectra and waveguide dispersion show clear signatures of electronic effects such as exciton-polariton formation. These results show the importance of the polaritonic nature of waveguiding in semiconducting nanoscale optical cavities and provide insights for the integration of semiconductor nanowire waveguides in nanophotonic circuitry.
本文报道了一种新技术,通过对单根纳米线有源波导进行空间和光谱分辨扫描光学显微镜,可确定波导传播损耗和色散。利用波导传播损耗谱可以深入了解这些独特的纳米结构材料的光学吸收谱,这些材料与体材料相比有所修饰。传播谱和波导色散显示出明显的电子效应,如激子极化激元形成的特征。这些结果表明了在半导体纳米尺度光学腔中导波的极化激元性质的重要性,并为半导体纳米线波导在纳米光子电路中的集成提供了见解。