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操控拓扑光子晶体异质结构中的光与物质相互作用。

Manipulating the light-matter interaction in a topological photonic crystal heterostructure.

作者信息

Ming Qing Ye, Feng Ma Hui, Wei Wu Liang, Jun Cui Tie

出版信息

Opt Express. 2020 Nov 9;28(23):34904-34915. doi: 10.1364/OE.405434.

Abstract

We theoretically and numerically investigate the ligh-matter interaction in a classic topological photonic crystal (PhC) heterostructure, which consists of two opposite-facing 4-period PhCs spaced by a dielectric layer. Due to the excitation of topological edge mode (TEM) at the interface of the two PhCs, the strong coupling between incident light and TEM produces a high quality resonance peak, which can be applied to many optical devices. As a refractive index sensor, it achieves a sensitivity of 254.5 nm/RIU and a high figure of merit (> 250), which is superior to many previously reported sensors. We further study the coupling between photons and excitons by replacing the pure dielectric layer with the J-aggregates doped layer. By tuning the thickness of the doped layer and the angle of incident light, the dispersive TEM can efficiently interact with the molecular excitons to form a hybrid mode with TEM-like or exciton-like components, showing interesting energy transfer characteristics and flexible modulation characteristics. This work may be helpful for a better understanding of light-matter interactions in a topological PhC heterostructure, and achieve potential applications in related optical devices.

摘要

我们从理论和数值上研究了经典拓扑光子晶体(PhC)异质结构中的光与物质相互作用,该异质结构由两个相对的4周期PhC组成,中间由一个介电层隔开。由于在两个PhC的界面处激发了拓扑边缘模式(TEM),入射光与TEM之间的强耦合产生了一个高质量的共振峰,可应用于许多光学器件。作为一种折射率传感器,它实现了254.5 nm/RIU的灵敏度和高优值(>250),优于许多先前报道的传感器。我们通过用掺杂J聚集体的层代替纯介电层,进一步研究了光子与激子之间的耦合。通过调节掺杂层的厚度和入射光的角度,色散TEM可以有效地与分子激子相互作用,形成具有TEM样或激子样成分的混合模式,表现出有趣的能量转移特性和灵活的调制特性。这项工作可能有助于更好地理解拓扑PhC异质结构中的光与物质相互作用,并在相关光学器件中实现潜在应用。

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