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Excitonic Resonant Emission–Absorption of Surface Plasmons in Transition Metal Dichalcogenides for Chip-Level Electronic–Photonic Integrated Circuits

机译:用于芯片级电子-光子集成电路的过渡金属双硫属元素中表面等离子体激子的共振激发发射-吸收

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摘要

The monolithic integration of electronics and photonics has attracted enormous attention due to its potential applications. A major challenge to this integration is the identification of suitable materials that can emit and absorb light at the same wavelength. In this paper we utilize unique excitonic transitions in WS2 monolayers and show that WS2 exhibits a perfect overlap between its absorption and photoluminescence spectra. By coupling WS2 to Ag nanowires, we then show that WS2 monolayers are able to excite and absorb surface plasmons of Ag nanowires at the same wavelength of exciton photoluminescence. This resonant absorption by WS2 is distinguished from that of the ohmic propagation loss of silver nanowires, resulting in a short propagation length of surface plasmons. Our demonstration of resonant optical generation and detection of surface plasmons enables nanoscale optical communication and paves the way for on-chip electronic–photonic integrated circuits.
机译:电子和光子的单片集成由于其潜在的应用而引起了极大的关注。这种集成的主要挑战是确定可以发射和吸收相同波长的光的合适材料。在本文中,我们利用WS2单层中独特的激子跃迁,表明WS2在其吸收光谱和光致发光光谱之间表现出完美的重叠。通过将WS2耦合到Ag纳米线,我们然后表明WS2单层能够在相同的激子光致发光波长下激发和吸收Ag纳米线的表面等离激元。 WS2的这种共振吸收与银纳米线的欧姆传播损耗的共振吸收不同,导致表面等离激元的传播长度短。我们对共振光学产生和表面等离振子检测的演示使纳米级光通信成为可能,并为片上电子-光子集成电路铺平了道路。

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