论文标题
使用弯曲的等离子纳米线在镜腔上引导单层二硫化物光致发光
Directing Monolayer Tungsten Disulfide Photoluminescence using a Bent Plasmonic Nanowire on a Mirror Cavity
论文作者
论文摘要
设计方向性光天线而不损害场增强,需要专门设计的光腔。本文中,我们报告了使用镜腔上使用弯曲质量纳米线从单层二硫化物中定向光致发光发射的实验观察结果。几何形状通过将单层夹在延伸的空腔之间夹在掉落弯曲的银纳米线和金镜形成的扩展腔之间,从而为光致发光提供了场的增强和方向性。我们使用傅立叶平面成像技术对光致发光发射波频进行成像。腔体与狭窄范围的波频范围相对应,径向和方位角扩散仅为11.0°和25.1°。此外,我们进行了三维有限差差的基于时间域的数值计算,以证实和理解实验结果。我们设想,此处介绍的结果将很容易用于芯片耦合应用以及设计非弹性光学天线。
Designing directional optical antennas without compromising the field enhancement requires specially designed optical cavities. Herein, we report on the experimental observations of directional photoluminescence emission from a monolayer Tungsten Disulfide using a bent-plasmonic nanowire on a mirror cavity. The geometry provides field enhancement and directivity to photoluminescence by sandwiching the monolayer between an extended cavity formed by dropcasting bent silver nanowire and a gold mirror. We image the photoluminescence emission wavevectors by using the Fourier plane imaging technique. The cavity out-couples the emission in a narrow range of wavevectors with a radial and azimuthal spreading of only 11.0° and 25.1°, respectively. Furthermore, we performed three dimensional finite difference time domain based numerical calculations to corroborate and understand the experimental results. We envisage that the results presented here will be readily harnessed for on-chip coupling applications and in designing inelastic optical antennas.