论文标题
菌株依赖性激子扩散在过渡金属二核苷元中
Strain-dependent exciton diffusion in transition metal dichalcogenides
论文作者
论文摘要
过渡金属二分裂基化(TMDS)的单层具有显着的激子景观,并具有深厚的明亮和深色激子状态。它们的特性受到晶格失真的强烈影响,这些扭曲可以通过应变以受控的方式产生。在这里,我们进行了一项联合理论实验研究,研究了二硫化钨(WS $ _2 $)单层中的激子扩散。我们揭示了菌株的非平凡和非单调影响。晶格变形导致明亮和深色激子的不同能量转移,改变了激发型景观,间隔散射通道的效率以及单个激子物种的重量与整体激子扩散。我们预测,未经培训的WS $ _2 $的最小扩散系数随后在约0.6 \%菌株下的急性加速度为3倍,与我们的实验非常吻合。获得的对应变对激子扩散影响的微观见解适用于一类广泛的多谷2D材料。
Monolayers of transition metal dichalcogenides (TMDs) have a remarkable excitonic landscape with deeply bound bright and dark exciton states. Their properties are strongly affected by lattice distortions that can be created in a controlled way via strain. Here, we perform a joint theory-experiment study investigating exciton diffusion in strained tungsten disulfide (WS$_2$) monolayers. We reveal a non-trivial and non-monotonic influence of strain. Lattice deformations give rise to different energy shifts for bright and dark excitons changing the excitonic landscape, the efficiency of intervalley scattering channels, and the weight of single exciton species to the overall exciton diffusion. We predict a minimal diffusion coefficient in unstrained WS$_2$ followed by a steep speed-up by a factor of 3 for tensile biaxial strain at about 0.6\% strain - in excellent agreement with our experiments. The obtained microscopic insights on the impact of strain on exciton diffusion are applicable to a broad class of multi-valley 2D materials.