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将 WSe 中的离散量子发射器中的单光子与光刻定义的等离子体槽波导耦合。

Coupling Single Photons from Discrete Quantum Emitters in WSe to Lithographically Defined Plasmonic Slot Waveguides.

机构信息

Walter Schottky Institut and Physik Department , Technische Universität München , Am Coulombwall 4 , 85748 Garching , Germany.

Nanosystems Initiative Munich (NIM) , Schellingstr. 4 , 80799 Munich , Germany.

出版信息

Nano Lett. 2018 Nov 14;18(11):6812-6819. doi: 10.1021/acs.nanolett.8b02687. Epub 2018 Sep 4.

Abstract

We report the observation of the generation and routing of single plasmons generated by localized excitons in a WSe monolayer flake exfoliated onto lithographically defined Au-plasmonic waveguides. Statistical analysis of the position of different quantum emitters shows that they are (3.3 ± 0.7) times more likely to form close to the edges of the plasmonic waveguides. By characterizing individual emitters, we confirm their single-photon character via the observation of antibunching in the signal ( g(0) = 0.42) and demonstrate that specific emitters couple to modes of the proximal plasmonic waveguide. Time-resolved measurements performed on emitters close to and far away from the plasmonic nanostructures indicate that Purcell factors up to 15 ± 3 occur, depending on the precise location of the quantum emitter relative to the tightly confined plasmonic mode. Measurement of the point spread function of five quantum emitters relative to the waveguide with <50 nm precision is compared with numerical simulations to demonstrate the potential for greater increases in the coupling efficiency for ideally positioned emitters. The integration of such strain-induced quantum emitters with deterministic plasmonic routing is a step toward deep-subwavelength on-chip single quantum light sources.

摘要

我们报告了在通过光刻定义的 Au 等离子体波导上剥落的 WSe 单层薄片中,局域激子产生的单个等离子体的产生和路由的观察结果。对不同量子发射器位置的统计分析表明,它们更有可能(3.3±0.7)倍接近等离子体波导的边缘形成。通过对单个发射器进行特性分析,我们通过观察信号中的反聚束(g(0)=0.42)证实了它们的单光子特性,并证明了特定的发射器与近场等离子体波导的模式耦合。在靠近和远离等离子体纳米结构的发射器上进行的时间分辨测量表明,取决于量子发射器相对于紧密限制的等离子体模式的精确位置,Purcell 因子高达 15±3。对五个量子发射器相对于波导的点扩散函数的测量具有 <50nm 的精度,并与数值模拟进行了比较,证明了对于理想位置的发射器,耦合效率有更大提高的潜力。应变诱导的量子发射器与确定性等离子体路由的集成是实现深亚波长片上单量子光源的一步。

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