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Observation of hybrid Tamm-plasmon exciton- polaritons with GaAs quantum wells and a MoSe 2 monolayer

机译:GaAs量子阱和MoSe 2单层混合Tamm-等离子体激子-极化子的观察

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Strong light matter coupling between excitons and microcavity photons, as described in the framework of cavity quantum electrodynamics, leads to the hybridization of light and matter excitations. The regime of collective strong coupling arises, when various excitations from different host media are strongly coupled to the same optical resonance. This leads to a well-controllable admixture of various matter components in three hybrid polariton modes. Here, we study a cavity device with four embedded GaAs quantum wells hosting excitons that are spectrally matched to the A-valley exciton resonance of a MoSe2 monolayer. The formation of hybrid polariton modes is evidenced in momentum resolved photoluminescence and reflectivity studies. We describe the energy and k-vector distribution of exciton-polaritons along the hybrid modes by a thermodynamic model, which yields a very good agreement with the experiment.
机译:如腔量子电动力学的框架中所述,激子与微腔光子之间的强光物质耦合导致光与物质激发的杂化。当来自不同宿主介质的各种激发强烈耦合到同一光学共振时,就会出现集体强耦合。这导致在三种混合极化模式中各种物质成分的可控混合。在这里,我们研究具有四个嵌入式GaAs量子阱的空腔器件,该阱容纳激子,该激子在光谱上与MoSe2单层的A谷激子共振相匹配。动量分辨光致发光和反射率研究证明了混合极化子模式的形成。我们通过热力学模型描述了沿混合模态的激子-极化子的能量和k-矢量分布,与实验结果非常吻合。

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