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Observation of Tunable Charged Exciton Polaritons in Hybrid Monolayer WS2?Plasmonic Nanoantenna System

机译:杂交单层WS 2 α等级纳米南纳系统的可调谐带电激子极性膜的观察

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摘要

Formation of dressed light-matter states in optical structures, manifested as Rabi splitting of the eigen energies of a coupled system, is one of the key effects in quantum optics. In pursuing this regime with semiconductors, light is usually made to interact with excitons, electrically neutral quasiparticles of semiconductors; meanwhile interactions with charged three-particle states, trions, have received little attention. Here, we report on strong interaction between localized surface plasmons in silver nanoprisms and excitons and trions in monolayer tungsten disulfide (WS_(2)). We show that the plasmon–exciton interactions in this system can be efficiently tuned by controlling the charged versus neutral exciton contribution to the coupling process. In particular, we show that a stable trion state emerges and couples efficiently to the plasmon resonance at low temperature by forming three bright intermixed plasmon–exciton–trion polariton states. Our findings open up a possibility to exploit electrically charged polaritons at the single nanoparticle level.
机译:在光学结构中形成衣服的光物质状态,表现为耦合系统的eIGEN能量的Rabi分裂,是量子光学器件中的关键效果之一。在用半导体追求这一制度的情况下,通常使光与激子相互作用,半导体的电中性Quasiplylics;与此同时,与带电的三粒子状态,细长的相互作用,收到了很少的关注。在这里,我们报告了单层钨钨中银纳米藓和激子和动脉中局部表面等离子体之间的强烈相互作用(WS_(2))。我们表明,通过控制充电的与中性激子贡献给耦合过程,可以有效地调整该系统中的等离子体 - 激子相互作用。特别地,我们表明,通过形成三个明亮的混合的等离子体激素 - 激子射击极性态,稳定的Trion状态能够在低温下有效地耦合到等离子体共振。我们的调查结果开辟了在单一纳米粒子水平下剥削电荷的极性恒温。

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