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Coherent dynamics of resonantly excited excitons in monolayers of transition metal dichalcogenides

机译:过渡金属二卤化物单层中共振激发激子的相干动力学

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We investigate dynamics of resonantly excited excitons in single-layers of MoSe_2 and WS_2 down to 4.5 K. To this end, we measure the delay dependence of the heterodyne four-wave mixing (FWM) amplitude induced by three, short laser pulses. This signal depends not only on the population of optically active excitons, which affects the absorption of the probe, but also on the population of optically inactive states, by interaction-induced energy shift, influencing the refractive index experienced by the probe. As such, it offers insight into density dynamics of excitons which do not directly couple to photons. Reproducing the coherent signal detected in amplitude and phase, the FWM delay dependence is modeled by a coherent superposition of several exponential decay components, with characteristic time constants from 0.1 picosecond up to 1 nanosecond. With increasing excitation intensity and/or temperature, we observe strong interference effects in the FWM field amplitude, resulting in progressively more complex and nonintuitive signal dynamics. We attribute this behaviour to increasingly populated exciton dark states, which change the FWM field phase by the relative effect on absorption and refractive index. We observe that exciton recombination occurs on a significantly longer timescale in WS_2 with respect to MoSe_2, which is attributed to the dark character of exciton ground state in the former and the bright in the latter.
机译:我们研究了MoSe_2和WS_2的单层中低至4.5 K的共振激发激子的动力学。为此,我们测量了由三个短激光脉冲引起的外差四波混合(FWM)振幅的延迟依赖性。该信号不仅取决于影响探针吸收的旋光性激子的数量,而且还取决于相互作用引起的能量转移,从而影响探针所经历的折射率,旋光性不活跃状态的数量也受到影响。因此,它提供了对不直接耦合到光子的激子密度动力学的洞察力。再现在幅度和相位上检测到的相干信号,FWM延迟依赖性通过几个指数衰减分量的相干叠加来建模,其特征时间常数从0.1皮秒到1纳秒。随着激发强度和/或温度的升高,我们在FWM场振幅中观察到强烈的干扰效应,从而导致信号复杂性和非直观性逐渐增强。我们将此行为归因于激子暗态的增加,其通过对吸收和折射率的相对影响来改变FWM场相位。我们观察到,与MoSe_2相比,WS_2中的激子复合发生在更长的时间尺度上,这归因于前者中激子基态的暗特征和后者中的亮特征。

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