论文标题
过渡金属二色元中的扭曲诱导的激光诱导的激元波数据包
Twisted-light-induced exciton wave packets in transition-metal dichalcogenide monolayers
论文作者
论文摘要
我们介绍了Laguerre-Gaussian Beams的过渡金属二分法单层单层(TMD-ML)中光生成的激子(TMD-ML)中的全面理论研究,Laguerre-Gaussian Beams是一种著名的扭曲灯(TL),载有量化的轨道尺寸轨道Angular Momenta(OAM)。我们表明,TL入射到TMD-ML的光启动会导致形成空间局部的激子波数据包,这是由有限的摩肌激子态的叠加所构成的,这是由光学自由度之间有趣的相互作用所确定的。因此,TL诱导的激子波包产生了深刻的定向光光量,其极性角度依赖性是由转移的光学OAM和方位角部分编码的,尽管OAM-IRRERERERERVANT,但在光学上仍可以通过光学解析交换式延长纵向和横向突发带。有趣的是,将线性极化的TL应用于山谷 - 异位系统模拟激子多路复用器,允许选择性地检测单个山谷混合的激子带,通常很难在光谱上测量。
We present a comprehensive theoretical investigation of the photo-generated excitons in transition-metal dichalcogenide monolayers (TMD-ML's) by Laguerre-Gaussian beams, a celebrated kind of twisted lights (TL's) carrying quantized orbital angular momenta (OAM). We show that the photo-excitation of TL incident to a TMD-ML leads to the formation of spatially localized exciton wave packets, constituted by the superposition of finite-momentum exciton states determined by the intriguing interplay between the multiple degrees of freedom of the optical and excitonic subsystems. Consequently, the TL-induced exciton wave packets yield profound directional photo-luminescences whose polar-angle-dependences are encoded by the transferred optical OAM and azimuthal angle part, despite OAM-irrelevant, optically resolves the exchange-split longitudinal and transverse exciton bands. Interestingly, the application of linearly polarized TL onto a valley-excitonic system mimics an exciton multiplexer allowing for selectively detecting the individual valley-mixed exciton bands, which are normally hardly measured spectrally.