论文标题
单层WS2中的换速度耦合和非平衡动力学
Light-matter coupling and non-equilibrium dynamics of exchange-split trions in monolayer WS2
论文作者
论文摘要
过渡金属二分法的单层提出了一个有趣的平台,以研究二维半导体中激子复合物的相互作用。在这里,我们使用光谱法研究三粒子激子状态(通常称为Trions)的光结合和非平衡弛豫动力学。我们通过各种计算从基于钨的单层材料中确定了交换相互作用的后果,并通过实验确定其振荡器强度的特征差异。它使我们能够从时间分辨的光致发光测量中定量提取TRION群体,并在非谐振光学注射后监测其动力学。在液态氦气温度下,我们观察到Trions在其一生中明显的非平衡分布,其平衡相对较慢,这是在多达100 ps的时间尺度上发生的。此外,我们发现以最低激发密度的最低兴奋性倒置状态,在Picseconds的10年代内累积并维持。随着晶格温度的升高,平衡的建立更快,并且反转消失,这突出了热激活在交换式Trions之间有效散射的作用。
Monolayers of transition metal dichalcogenides present an intriguing platform to investigate the interplay of excitonic complexes in two dimensional semiconductors. Here, we use optical spectroscopy to study light-matter coupling and non-equilibrium relaxation dynamics of three-particle exciton states, commonly known as trions. We identify the consequences of the exchange interaction for the trion finestructure in tungsten-based monolayer materials from variational calculations and experimentally determine the resulting characteristic differences in their oscillator strength. It allows us to quantitatively extract trion populations from time-resolved photoluminescence measurements and monitor their dynamics after off-resonant optical injection. At liquid helium temperature we observe pronounced non-equilibrium distribution of the trions during their lifetime with comparatively slow equilibration that occurs on time-scales up to several 100's of ps. In addition, we find an intriguing regime of population inversion at lowest excitation densities that builds up and is maintained during 10's of picoseconds. With increased lattice temperature the equilibrium is established more rapidly and the inversion disappears, highlighting the role of thermal activation for efficient scattering between exchange-split trions.