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Coherent quantum dynamics of excitons in monolayer transition metal dichalcogenides

机译:单层过渡金属二甲基甲基甲基甲基激子的相干量子动态

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Transition metal dichalcogenides (TMDs) have garnered considerable interest in recent years owing to their layer thickness-dependent optoelectronic properties. In monolayer TMDs, the large carrier effective masses, strong quantum confinement, and reduced dielectric screening lead to pronounced exciton resonances with remarkably large binding energies and coupled spin and valley degrees of freedom (valley excitons). Coherent control of valley excitons for atomically thin optoelectronics and valleytronics requires understanding and quantifying sources of exciton decoherence. In this work, we reveal how exciton-exciton and exciton-phonon scattering influence the coherent quantum dynamics of valley excitons in monolayer TMDs, specifically tungsten diselenide (WSe_2), using two-dimensional coherent spectroscopy. Excitation-density and temperature dependent measurements of the homogeneous linewidth (inversely proportional to the optical coherence time) reveal that exciton-exciton and exciton-phonon interactions are significantly stronger compared to quasi-2D quantum wells and 3D bulk materials. The residual homogeneous linewidth extrapolated to zero excitation density and temperature is ~ 1.6 meV (equivalent to a coherence time of 0.4 ps), which is limited only by the population recombination lifetime in this sample.
机译:由于其层厚度依赖性光电性质,过渡金属二硫代甲基化物(TMDS)近年来已经获得了相当大的兴趣。在单层TMDS中,大量的载体有效质量,强量子限制和降低的介电筛选导致激子共振,具有显着大的粘合能和耦合的旋转和谷自由度(山谷激子)。对原子薄的光电子和谷谷机的谷激子的相干控制需要了解和量化激子变形的来源。在这项工作中,我们揭示了Exciton-Exciton和Exciton-Phonon散射如何影响单层TMDS中谷激子脉的相干量子动态,特别是使用二维相干光谱法,特别是钨醛纤维素(WSE_2)。与准2D量子孔和3D散装材料相比,均匀线宽(与光学相干时间成反比度)的激发密度和温度依赖性测量结果表明,与准2D量子孔和3D散装材料相比,Exciton-Exciton和Exciton-Phonon相互作用显着较强。外推到零激发密度和温度的残余均匀线宽为约1.6mEV(相当于0.4 ps的相干时间),仅受该样品中的群体重组寿命的限制。

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