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Exciton-Exciton Interaction beyond the Hydrogenic Picture in a MoSe_2 Monolayer in the Strong Light-Matter Coupling Regime

机译:Exciton-Exciton在强光耦合状态下在MOSE_2 Monolayer中的氢像之外的互动

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摘要

In transition metal dichalcogenides' layers of atomic-scale thickness, the electron-hole Coulomb interaction potential is strongly influenced by the sharp discontinuity of the dielectric function across the layer plane. This feature results in peculiar nonhydrogenic excitonic states in which exciton-mediated optical nonlinearities are predicted to be enhanced compared to their hydrogenic counterparts. To demonstrate this enhancement, we perform optical transmission spectroscopy of a MoSe2 monolayer placed in the strong coupling regime with the mode of an optical microcavity and analyze the results quantitatively with a nonlinear input-output theory. We find an enhancement of both the exciton-exciton interaction and of the excitonic fermionic saturation with respect to realistic values expected in the hydrogenic picture. Such results demonstrate that unconventional excitons in MoSe2 are highly favorable for the implementation of large exciton-mediated optical nonlinearities, potentially working up to room temperature.
机译:在过渡金属二甲基化物的原子尺寸厚度层中,电子孔库孔相互作用电位受到层平面上介电功能的急剧性的强烈影响。该特征导致特殊的非氢化激素状态,其中预测激子介导的光学非线性与其氢相体相比增强。为了证明这种增强,我们使用光学微腔的模式执行置于强耦合状态中的MOSE2单层的光传输光谱,并用非线性输入 - 输出理论定量分析结果。我们发现激发器激子相互作用和激发器的抗性饱和度相对于氢图像中预期的现实值的增强。这种结果表明,MOSE2中的非传统激子对大型激子介导的光学非线性的实施非常有利,可能达到室温。

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  • 来源
    《Physical review letters》 |2021年第16期|167401.1-167401.7|共7页
  • 作者单位

    Univ Grenoble Alpes Inst Neel Grenoble INP CNRS F-38000 Grenoble France;

    Univ Grenoble Alpes LPMMC CNRS F-38000 Grenoble France;

    Univ Wurzburg Tech Phys D-97074 Wurzburg Germany|Univ Wurzburg Wilhelm Conrad Rontgen Res Ctr Complex Mat Syst Phys Inst D-97074 Wurzburg Germany;

    Univ Wurzburg Tech Phys D-97074 Wurzburg Germany|Univ Wurzburg Wilhelm Conrad Rontgen Res Ctr Complex Mat Syst Phys Inst D-97074 Wurzburg Germany;

    Arizona State Univ Tempe AZ 85287 USA;

    Arizona State Univ Tempe AZ 85287 USA;

    Univ Wurzburg Tech Phys D-97074 Wurzburg Germany|Univ Wurzburg Wilhelm Conrad Rontgen Res Ctr Complex Mat Syst Phys Inst D-97074 Wurzburg Germany;

    Macquarie Univ Dept Phys & Astron Sydney NSW 2109 Australia|Macquarie Univ Arc Ctr Excellence Engn Quantum Syst Sydney NSW 2109 Australia;

    Univ Grenoble Alpes LPMMC CNRS F-38000 Grenoble France;

    Univ Grenoble Alpes Inst Neel Grenoble INP CNRS F-38000 Grenoble France;

    Carl von Ossietzky Univ Oldenburg Inst Phys D-26129 Oldenburg Germany;

    Univ Grenoble Alpes Inst Neel Grenoble INP CNRS F-38000 Grenoble France;

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