van Vugt Lambert K, Zhang Bin, Piccione Brian, Spector Arthur A, Agarwal Ritesh
Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Nano Lett. 2009 Apr;9(4):1684-8. doi: 10.1021/nl900371r.
Fundamental understanding of the size dependence of nanoscale optical confinement in semiconductor nanowire waveguides, as expressed by changes in the dispersion of light, is crucial for the optimal design of nanophotonic devices. Measurements of the dispersion are particularly challenging for nanoscale cavities due to difficulties associated with the in- and out-coupling of light resulting from diffraction effects. We report the strong size dependence of optical dispersion and associated group velocities in subwavelength width ZnSe nanowire waveguide cavities, using a technique based on Fabry-Perot resonator modes as probes over a wide energy range. Furthermore, we observed subwavelength (lambda/9) dispersionless waveguiding and significant slowing of the propagating light by 90% (c/8). These results, in addition to providing insights into nanoscale optical transport, will facilitate the rational design of nanowire photonic devices with tailored dispersion and group velocities.
对半导体纳米线波导中纳米级光学限制的尺寸依赖性的基本理解,如通过光的色散变化所表达的,对于纳米光子器件的优化设计至关重要。由于衍射效应导致光的内耦合和外耦合存在困难,因此对于纳米级腔来说,色散的测量尤其具有挑战性。我们报告了亚波长宽度的ZnSe纳米线波导腔中光学色散和相关群速度的强烈尺寸依赖性,使用基于法布里-珀罗谐振器模式的技术作为探针,在很宽的能量范围内进行测量。此外,我们观察到亚波长(λ/9)无色散波导以及传播光显著减慢90%(c/8)。这些结果除了能深入了解纳米级光传输外,还将有助于合理设计具有定制色散和群速度的纳米线光子器件。