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Phonon-exciton Interactions in WSe2 under a quantizing magnetic field

机译:在量化磁场下WSE2中的声子激发器相互作用

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摘要

Strong many-body interaction in two-dimensional transitional metal dichalcogenides provides a unique platform to study the interplay between different quasiparticles, such as prominent phonon replica emission and modified valley-selection rules. A large out-of-plane magnetic field is expected to modify the exciton-phonon interactions by quantizing excitons into discrete Landau levels, which is largely unexplored. Here, we observe the Landau levels originating from phonon-exciton complexes and directly probe exciton-phonon interaction under a quantizing magnetic field. Phonon-exciton interaction lifts the inter-Landau-level transition selection rules for dark trions, manifested by a distinctively different Landau fan pattern compared to bright trions. This allows us to experimentally extract the effective mass of both holes and electrons. The onset of Landau quantization coincides with a significant increase of the valley-Zeeman shift, suggesting strong many-body effects on the phonon-exciton interaction. Our work demonstrates monolayer WSe 2 as an intriguing playground to study phonon-exciton interactions and their interplay with charge, spin, and valley.
机译:二维过渡金属二甲硅藻的强度多体相互作用提供了一种独特的平台,用于研究不同Quasiply之间的相互作用,例如突出的声子复制和改进的谷选择规则。预计大量外平面磁场将通过量化激子成分为离散地Landau水平来修改Exciton-Phonon相互作用,这在很大程度上是未开发的。在这里,我们观察源自Phonon-Exciton复合物的Landau水平,并在量化磁场下直接探测激子 - 声子相互作用。 Phonon-Exciton互动抬起暗枝的Landau级别过渡选择规则,与明亮的细长相比,由一个明显不同的Landau风扇模式表现出来。这使我们能够通过实验提取两个孔和电子的有效质量。 Landau量化的开始与Valley-Zeeman转变的显着增加一致,表明对声子激发器相互作用的强烈许多效果。我们的工作展示了单层WSE 2作为一个有趣的操场,用于研究声子激发器互动及其与充电,旋转和谷的相互作用。

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