论文标题
快速和异常激子扩散
Fast and anomalous exciton diffusion in two-dimensional hybrid perovskites
论文作者
论文摘要
二维杂种钙钛矿目前因其吸引人的光电和振动特性而引起了冷凝物质和纳米技术研究的焦点,并具有出现轻度收获和发射应用的潜力。尽管众所周知,这些天然量子井构成了紧密结合的激子,但这些基本光激励的迁移率仍然在很大程度上没有探索。在这里,我们直接监测激发液从液体氦气到室温的二维杂交钙钛矿的扩散。我们发现在50 K以上的所有温度下,具有游离激子传播的特征标志非常快速扩散。在低温状态下,我们观察到非线性,异常行为,具有激子云的异常快速扩张,然后是非常缓慢的,甚至是非常缓慢的,甚至是负面的有效扩散。我们讨论了我们的发现,鉴于有效的激子 - phonon耦合,突出了二维混合动力车,作为多体物理学研究和纳米级光电应用的有前途的平台。
Two-dimensional hybrid perovskites are currently in the spotlight of condensed matter and nanotechnology research due to their intriguing optoelectronic and vibrational properties with emerging potential for light-harvesting and -emitting applications. While it is known that these natural quantum wells host tightly bound excitons, the mobilities of these fundamental optical excitations at the heart of the optoelectronic applications are still largely unexplored. Here, we directly monitor the diffusion of excitons through ultrafast emission microscopy from liquid helium to room temperature in hBN-encapsulated two-dimensional hybrid perovskites. We find very fast diffusion with characteristic hallmarks of free exciton propagation for all temperatures above 50 K. In the cryogenic regime we observe nonlinear, anomalous behavior with an exceptionally rapid expansion of the exciton cloud followed by a very slow and even negative effective diffusion. We discuss our findings in view of efficient exciton-phonon coupling, highlighting two-dimensional hybrids as promising platforms for many-body physics research and optoelectronic applications on the nanoscale.