Tao Weijian, Zhou Qiaohui, Zhu Haiming
State Key Laboratory of Modern Optical Instrumentation, Centre for Chemistry of High-Performance and Novel Materials, Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang 310027, China.
Sci Adv. 2020 Nov 20;6(47). doi: 10.1126/sciadv.abb7132. Print 2020 Nov.
Two-dimensional lead halide perovskites with confined excitons have shown exciting potentials in optoelectronic applications. It is intriguing but unclear how the soft and polar lattice redefines excitons in layered perovskites. Here, we reveal the intrinsic exciton properties by investigating exciton spin dynamics, which provides a sensitive probe to exciton coulomb interactions. Compared to transition metal dichalcogenides with comparable exciton binding energy, we observe orders of magnitude smaller exciton-exciton interaction and, counterintuitively, longer exciton spin lifetime at higher temperature. The anomalous spin dynamics implies that excitons exist as exciton polarons with substantially weakened inter- and intra-excitonic interactions by dynamic polaronic screening. The combination of strong light matter interaction from reduced dielectric screening and weakened inter-/intra-exciton interaction from dynamic polaronic screening explains their exceptional performance and provides new rules for quantum-confined optoelectronic and spintronic systems.
具有受限激子的二维卤化铅钙钛矿在光电子应用中展现出了令人兴奋的潜力。软极性晶格如何在层状钙钛矿中重新定义激子,这一点引人关注却尚不清楚。在此,我们通过研究激子自旋动力学揭示了其本征激子特性,激子自旋动力学为激子库仑相互作用提供了一个灵敏的探针。与具有可比激子结合能的过渡金属二卤化物相比,我们观察到激子 - 激子相互作用小了几个数量级,并且与直觉相反的是,在较高温度下激子自旋寿命更长。这种反常的自旋动力学意味着激子以激子极化子的形式存在,通过动态极化子屏蔽,其激子间和激子内的相互作用大幅减弱。介电屏蔽减弱导致的强光 - 物质相互作用与动态极化子屏蔽导致的激子间/激子内相互作用减弱相结合,解释了它们的优异性能,并为量子受限光电子和自旋电子系统提供了新规则。