Walker Department of Mechanical Engineering, Materials Science and Engineering Program and Texas Materials Institute, The University of Texas at Austin, Austin, TX, 78712, USA.
Department of Materials Science and Engineering, The Pennsylvania State University, University Park, PA, 16802, USA.
Adv Mater. 2019 Dec;31(49):e1904132. doi: 10.1002/adma.201904132. Epub 2019 Oct 17.
Spin-dependent contrasting phenomena at K and K' valleys in monolayer semiconductors have led to addressable valley degree of freedom, which is the cornerstone for emerging valleytronic applications in information storage and processing. Tunable and active modulation of valley dynamics in a monolayer WSe is demonstrated at room temperature through controllable chiral Purcell effects in plasmonic chiral metamaterials. The strong spin-dependent modulation on the spontaneous decay of valley excitons leads to tunable handedness and spectral shift of valley-polarized emission, which is analyzed and predicted by an advanced theoretical model and further confirmed by experimental measurements. Moreover, large active spectral tuning (≈24 nm) and reversible ON/OFF switching of circular polarization of emission are achieved by the solvent-controllable thickness of the dielectric spacer in the metamaterials. With the on-demand and active tunability in valley-polarized emission, chiral Purcell effects can provide new strategies to harness valley excitons for applications in ultrathin valleytronic devices.
在单层半导体的 K 和 K' 谷中存在自旋相关的对比现象,这导致了可寻址的谷自由度,这是新兴谷电子学在信息存储和处理中应用的基础。通过在等离激元手性超材料中可控的手性普塞尔效应,在室温下演示了单层 WSe 中谷动力学的可调谐和主动调制。强自旋相关调制导致谷激子自发衰减的手性和谷偏振发射的光谱移动,这通过先进的理论模型进行了分析和预测,并通过实验测量进一步证实。此外,通过手性超材料中介电间隔层的溶剂可控厚度实现了发射的大的主动光谱调谐(≈24nm)和圆偏振的可逆 ON/OFF 切换。通过谷偏振发射的按需和主动可调谐性,手性普塞尔效应可以为利用谷激子在超薄谷电子学器件中的应用提供新的策略。