论文标题
通过与金属光栅耦合来调整纳米线激光模式
Tailoring Nanowire Lasing Modes via Coupling to Metal Gratings
论文作者
论文摘要
鉴于设想将这种设备集成到芯片全光电通路中的鉴于纳米质体的发射基于等离子纳米线激光器的发射是纳米质谱领域的主要挑战之一。在这项研究中,我们提出了一种基于分布式反馈的模式选择方案,该方案通过将单个氧化锌纳米线与铝光栅的外部耦合实现,从而实现了准单格模式激光动作。单个纳米线的纳米操作允许对平面(即金属底物上的纳米线)和晶状体配置的激光发射特性进行可靠的比较。我们发现,通过改变纳米线在光栅上的方向,只有当纳米腔垂直于山脊方向时,在增益包膜低能侧的发射光谱中出现了另一个峰。由于达到布拉格条件的实现,这种峰归因于混合模式主导模式竞争。仿真结果表明,混合模式可以沿纳米线腔有效地向导,并由在金属光栅脊的顶部建立在凸起的特征(“栅栏”)上的局部等离子体极化子支撑。此外,除了纳米线端面提供的杂种模式外,混合模式在整个光栅期间还具有近50%的额外反射率。
Tailoring the emission of plasmonic nanowire-based lasers represents one of the major challenges in the field of nanoplasmonics, given the envisaged integration of such devices into on-chip all-optical circuits. In this study, we proposed a mode selection scheme based on distributed feedback, achieved via the external coupling of single zinc oxide nanowires to an aluminum grating, which enabled a quasi-single mode lasing action. The nano-manipulation of a single nanowire allowed for a reliable comparison of the lasing emission characteristics in both planar (i.e. nanowire on the metallic substrate) and on-grating configurations. We found that, by varying the orientation of the nanowire on the grating, only when the nano-cavity was perpendicular to the ridge direction, an additional peak emerged in the emission spectrum on the low-energy side of the gain envelope. As a consequence of the fulfillment of the Bragg condition, such a peak was attributed to a hybrid mode dominating the mode competition. Simulation results showed that the hybrid mode could be efficiently waveguided along the nanowire cavity and supported by localized plasmon polaritons building up at the raised features ("fences") on top of the metal grating ridges. Moreover, the hybrid mode was found to experience an extra reflectance of nearly 50% across the grating periods, in addition to that provided by the nanowire end facets.