Aramesh Morteza, Cervenka Jiri, Roberts Ann, Djalalian-Assl Amir, Rajasekharan Ranjith, Fang Jinghua, Ostrikov Kostya, Prawer Steven
Opt Express. 2014 Jun 30;22(13):15530-41. doi: 10.1364/OE.22.015530.
A finite element method is applied to study the coupling between a nitrogen vacancy (NV) single photon emitter in nanodiamond and surface plasmons in a silver nanowire embedded in an alumina nanochannel template. We investigate the effective parameters in the coupled system and present detailed optimization for the maximum transmitted power at a selected optical frequency (650 nm). The studied parameters include nanowire length, nanowire diameter, distance between the dipole and the nanowire, orientation of the emitter and refractive index of the surrounding. It is found that the diameter of the nanowire has a strong influence on the propagation of the surface plasmon polaritons and emission power from the bottom and top endings of the nanowire.
应用有限元方法研究纳米金刚石中的氮空位(NV)单光子发射器与嵌入氧化铝纳米通道模板中的银纳米线中的表面等离子体激元之间的耦合。我们研究了耦合系统中的有效参数,并针对选定光频率(650纳米)下的最大传输功率进行了详细优化。研究的参数包括纳米线长度、纳米线直径、偶极子与纳米线之间的距离、发射器的取向以及周围环境的折射率。研究发现,纳米线的直径对表面等离子体激元的传播以及纳米线底部和顶部末端的发射功率有很大影响。