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Inverted valley polarization in optically excited transition metal dichalcogenides

机译:光激发过渡金属二卤化物中的倒谷极化

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摘要

Large spin–orbit coupling in combination with circular dichroism allows access to spin-polarized and valley-polarized states in a controlled way in transition metal dichalcogenides. The promising application in spin-valleytronics devices requires a thorough understanding of intervalley coupling mechanisms, which determine the lifetime of spin and valley polarizations. Here we present a joint theory–experiment study shedding light on the Dexter-like intervalley coupling. We reveal that this mechanism couples A and B excitonic states in different valleys, giving rise to an efficient intervalley transfer of coherent exciton populations. We demonstrate that the valley polarization vanishes and is even inverted for A excitons, when the B exciton is resonantly excited and vice versa. Our theoretical findings are supported by energy-resolved and valley-resolved pump-probe experiments and also provide an explanation for the recently measured up-conversion in photoluminescence. The gained insights might help to develop strategies to overcome the intrinsic limit for spin and valley polarizations.
机译:大的自旋-轨道耦合与圆二色性相结合,使过渡金属二卤化物可以受控方式进入自旋极化和谷极化状态。在自旋谷电子器件中的有前途的应用需要透彻了解音程耦合机制,该机制决定了自旋和波谷极化的寿命。在这里,我们提出了一项联合的理论-实验研究,为类似Dexter的intervalley联轴器提供了启示。我们揭示了这种机制耦合不同山谷中的A和B激子态,从而产生了相干激子群的有效区间转移。我们证明,当B激子被共振激发时,谷极极化消失,甚至对于A激子被反转,反之亦然。我们的理论发现得到了能量分辨和谷值分辨泵浦探针实验的支持,也为最近测量的光致发光上转换提供了解释。所获得的见解可能有助于制定克服自旋和谷极极化固有极限的策略。

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