Cole R M, Sugawara Y, Baumberg J J, Mahajan S, Abdelsalam M, Bartlett P N
School of Physics and Astronomy, University of Southampton, Highfield, Southampton, SO17 1BJ, United Kingdom.
Phys Rev Lett. 2006 Sep 29;97(13):137401. doi: 10.1103/PhysRevLett.97.137401. Epub 2006 Sep 25.
A new self-aligned robust method for coupling to whispering gallery modes (WGMs) of submicron microspheres utilizes their periodic arrangement without relying on nanopositioned external coupling devices. The microspheres are embedded in a nanostructured gold surface supporting delocalized plasmonic crystal modes that mediate the coupling, and can be tuned by the geometry. Detailed measurements of the angle- and orientation-dependent reflectivity reveal localized plasmonic WGMs whose energies scale with sphere diameter and agree closely with Mie calculations. Coupling between these plasmonic WGMs leads to mode splitting and the formation of plasmonic minibands of a controllable bandwidth.
一种用于耦合到亚微米微球回音壁模式(WGMs)的新型自对准稳健方法,利用微球的周期性排列,而不依赖于纳米定位的外部耦合装置。微球嵌入在支持离域等离子体晶体模式的纳米结构金表面中,该模式介导耦合,并且可以通过几何形状进行调节。对角度和取向相关反射率的详细测量揭示了局域等离子体WGMs,其能量与球体直径成比例,并且与米氏计算结果非常吻合。这些等离子体WGMs之间的耦合导致模式分裂并形成具有可控带宽的等离子体微带。