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Trion-Species-Resolved Quantum Beats in MoSe2

机译:在MOSE2中,Trion-Seaties-分辨量子节拍

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摘要

Monolayer photonic materials offer a tremendous potential for on-chip optoelectronic devices. Their realization requires knowledge of optical coherence properties of excitons and trions that have so far been limited to nonlinear optical experiments carried out with strongly inhomogeneously broadened material. Here we employ h-BN-encapsulated and electrically gated MoSe2 to reveal coherence properties of trion species directly in the linear optical response. Autocorrelation measurements reveal long dephasing times up to T-2 = 1.16 +/- 0.05 ps for positively charged excitons. Gate-dependent measurements provide evidence that the positively charged trion forms via spatially localized hole states, making this trion less prone to dephasing in the presence of elevated hole carrier concentrations. Quantum beat signatures demonstrate coherent coupling between excitons and trions that have a dephasing time up to 0.6 ps, a 2-fold increase over those in previous reports. A key merit of the prolonged exciton/trion coherences is that they were achieved in a linear optical experiment and thus are directly relevant to applications in nanolasers, coherent control, and on-chip quantum information processing requiring long photon coherence.
机译:单层光子材料为片上光电器件提供了巨大的潜力。他们的实现需要了解迄今为止的激子和细胞的光学相干性能,这些特性仅限于具有强烈不均匀扩大的材料的非线性光学实验。在这里,我们使用H-BN封装和电控MOSE2,以直接在线性光学响应揭示TRION物种的相干性能。自相关测量显示可带有带正电荷的激动件的长达T-2 = 1.16 +/- 0.05 PS的长度去除时间。栅极依赖性测量提供了通过空间局部孔状态的带正电荷的运动,使得这种小动物在升高的空穴载体浓度存在下容易脱节。量子击败签名展示了激子和细胞之间的相干耦合,这些耦合在脱模时间高达0.6 ps,对先前报告中的那些增加了2倍。延长的激子/小龙孔隙一致性的关键优点是它们在线性光学实验中实现,因此与需要长光子相干性的纳米溶解器,相干控制和片上量子信息处理的应用直接相关。

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