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Manipulating Coherent Light–Matter Interaction: Continuous Transition between Strong Coupling and Weak Coupling in MoS_2 Monolayer Coupled with Plasmonic Nanocavities

机译:操纵相干光-质相互作用:耦合的电浆纳米腔的MoS2单层中强耦合和弱耦合之间的连续过渡。

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摘要

Strong interactions between surface plasmons in ultracompact nanocavities and excitons in 2D materials have attracted wide interests for its prospective realization of polariton devices at room temperature. Here, a continuous transition from weak coupling to strong coupling between excitons in molybdenum disulfide (MoS2) monolayer and highly localized plasmons in ultracompact nanoantenna is proposed. The nanoantenna is assembled by a silver nanocube positioned over a gold film and separated by a dielectric spacer layer. A 1570-fold enhancement in the photoluminescence is observed at weak coupling regime in hybrid nanocavities with thick spacer layers. The interaction between excitons and plasmons is then directly prompted to strong coupling regime by shrinking down the thickness of spacer layer. Room temperature formation of polaritons with Rabi splitting up to 190 meV is observed with a fair polariton loss around 165 meV. Numerical calculations quantify the relation between coupling strength, local density of states, and spacer thickness, and reveal the transition between weak coupling and strong coupling in nanocavities. The findings in this work offer a guideline for feasible designs of plasmon-exciton interaction systems with gap plasmonic cavities.
机译:超紧凑纳米腔中的表面等离激元与2D材料中的激子之间的强相互作用吸引了人们的广泛兴趣,因为它有望在室温下实现极化子器件。在此,提出了从二硫化钼(MoS2)单层激子与超紧凑纳米天线中高度局限的等离子体激元之间的弱耦合到强耦合的连续过渡。纳米天线由位于金膜上方并由介电间隔层隔开的银纳米立方体组装而成。在具有较厚间隔层的杂化纳米腔中,在弱耦合条件下观察到光致发光增强1570倍。然后,通过减小间隔层的厚度,直接促使激子和等离子体激元之间的相互作用产生强耦合态。观察到室温下形成的极化子,其中Rabi分裂至190 meV,极化子损失约为165 meV。数值计算量化了耦合强度,状态局部密度和隔离层厚度之间的关系,并揭示了纳米腔中弱耦合和强耦合之间的过渡。这项工作的发现为具有间隙等离子体激元腔的等离子体激子相互作用系统的可行设计提供了指导。

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