论文标题

由2D材料制成的波导耦合发光设备

Waveguide-coupled light emitting devices made of 2D materials

论文作者

Khelifa, Ronja, Shan, Shengyu, Taniguchi, Takashi, Watanabe, Kenji, Novotny, Lukas

论文摘要

使用光子集成电路的光学信息处理是纳米光子学领域的关键目标。广泛的研究工作导致在一个单个光子电路中整合主动和被动器件功能方面取得了显着进步。尽管如此,迄今为止,中央组件之一 - 即光源 - 仍然是要集成的挑战。在这里,我们在基于2D材料的片上光子平台中演示了波导耦合的电驱动光发射器。我们将发光设备(LED)结合在过渡金属二分法(TMDS)中的激子重组,以及在单个Van der Waals(vdw)异构结构中的Hexagonal Nitonride(H-BN)光子波导。通过将LED夹在两个H-BN平板之间并将完整的VDW堆栈构图到光子结构中,可以实现波导耦合的光发射。我们对片上光生和波导的演示是未来集成VDW光电学的关键组成部分。

Optical information processing using photonic integrated circuits is a key goal in the field of nanophotonics. Extensive research efforts have led to remarkable progress in integrating active and passive device functionalities within one single photonic circuit. Still, to date, one of the central components - i.e. light sources - remain a challenge to be integrated. Here, we demonstrate waveguide-coupled electrically driven light emitters in an on-chip photonics platform based on 2D materials. We combine light-emitting devices (LEDs), based on exciton recombination in transition metal dichalcogenides (TMDs), with hexagonal boron nitride (h-BN) photonic waveguides in a single van der Waals (vdW) heterostructure. Waveguide-coupled light emission is achieved by sandwiching the LED between two h-BN slabs and patterning the complete vdW stack into a photonic structure. Our demonstration of on-chip light generation and waveguiding is a key component for future integrated vdW optoelectronics.

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