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WSe/MoSe 异质双层中的莫尔激子特征。

Signatures of moiré trions in WSe/MoSe heterobilayers.

机构信息

Department of Physics and Astronomy, University of California, Riverside, CA, USA.

Department of Electrical Engineering, Stanford University, Stanford, CA, USA.

出版信息

Nature. 2021 Jun;594(7861):46-50. doi: 10.1038/s41586-021-03541-z. Epub 2021 Jun 2.

Abstract

Moiré superlattices formed by van der Waals materials can support a wide range of electronic phases, including Mott insulators, superconductors and generalized Wigner crystals. When excitons are confined by a moiré superlattice, a new class of exciton emerges, which holds promise for realizing artificial excitonic crystals and quantum optical effects. When such moiré excitons are coupled to charge carriers, correlated states may arise. However, no experimental evidence exists for charge-coupled moiré exciton states, nor have their properties been predicted by theory. Here we report the optical signatures of trions coupled to the moiré potential in tungsten diselenide/molybdenum diselenide heterobilayers. The moiré trions show multiple sharp emission lines with a complex charge-density dependence, in stark contrast to the behaviour of conventional trions. We infer distinct contributions to the trion emission from radiative decay in which the remaining carrier resides in different moiré minibands. Variation of the trion features is observed in different devices and sample areas, indicating high sensitivity to sample inhomogeneity and variability. The observation of these trion features motivates further theoretical and experimental studies of higher-order electron correlation effects in moiré superlattices.

摘要

由范德华材料形成的莫尔超晶格可以支持广泛的电子相,包括莫特绝缘体、超导体和广义维格纳晶体。当激子被莫尔超晶格限制时,会出现一类新的激子,这为实现人工激子晶体和量子光学效应提供了可能。当这种莫尔激子与电荷载流子耦合时,可能会出现关联态。然而,目前还没有实验证据表明存在电荷耦合的莫尔激子态,也没有理论预测过它们的性质。在这里,我们报告了在二硒化钨/二硒化钼异质双层中与莫尔势耦合的三电子的光学特征。莫尔三电子显示出多个具有复杂电荷密度依赖性的尖锐发射线,与传统三电子的行为形成鲜明对比。我们推断,三电子发射的不同贡献来自于辐射衰变,其中剩余的载流子位于不同的莫尔微带中。在不同的器件和样品区域中观察到三电子特征的变化,表明对样品不均匀性和可变性的高度敏感性。这些三电子特征的观察激发了对莫尔超晶格中高阶电子相关效应的进一步理论和实验研究。

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