Thomas J. Watson Laboratory of Applied Physics, California Institute of Technology, Pasadena, California 91125, USA.
Nano Lett. 2011 Feb 9;11(2):372-6. doi: 10.1021/nl102878b. Epub 2011 Jan 18.
We investigate the radiative properties of plasmonic core-shell nanowire resonators and, using boundary element method calculations, demonstrate enhanced radiative decay rate by up to 3500 times in nanoscale compound semiconductor/metal cavities. Calculation of the local density of optical states enables identification of new types of modes in cavities with mode volumes on the order of 10(-4)(λ/n)(3). These modes dramatically enhance the radiative decay rate and significantly modify the polarization of far-field emission.
我们研究了等离子体芯壳纳米线谐振器的辐射特性,并通过边界元法计算,在纳米级复合半导体/金属腔中,将辐射衰减率提高了多达 3500 倍。对光态局域密度的计算使我们能够在模式体积约为 10(-4)(λ/n)(3)的腔中识别出新类型的模式。这些模式显著提高了辐射衰减率,并显著改变了远场发射的偏振。