卤化铅钙钛矿中激子间声子介导的吸引相互作用
材料科学
2022-03-15 v1 介观与纳米尺度物理
摘要
理解卤化铅钙钛矿(LHP)中电子-声子耦合的起源是解释和利用其光学与电子性质的关键。在此,我们进行飞秒分辨的光泵-电子衍射探测测量,以量化LHP纳米晶中由光激发引起的晶格重组。研究发现光激发驱动铅卤八面体倾角和晶格畸变的减小,这是形变势与低能光学声子耦合的结果。我们的结果表明FAPbBr3中的耦合尤其强,而CsPbBr3中的耦合弱得多,突出了LHP中主导电子-声子耦合机制的差异。我们将FAPbBr3中增强的耦合归因于其无序晶体结构,该结构一直保持到低温。我们发现多激子态中每个激子诱导的重组呈建设性干涉,产生随激子数二次方增长的耦合强度。这种超线性标度诱导了LHP中激子间声子介导的吸引相互作用。
引用
@article{arxiv.2203.06286,
title = {Phonon-Mediated Attractive Interactions between Excitons in Lead-Halide-Perovskites},
author = {Nuri Yazdani and Maryna I. Bodnarchuk and Federica Bertolotti and Norberto Masciocchi and Ina Fureraj and Burak Guzelturk and Benjamin L. Cotts and Marc Zajac and Gabriele Rainò and Maximilian Jansen and Simon C. Boehme and Maksym Yarema and Ming-Fu Lin and Michael Kozina and Alexander Reid and Xiaozhe Shen and Stephen Weathersby and Xijie Wang and Eric Vauthey and Antonietta Guagliardi and Maksym V. Kovalenko and Vanessa Wood and Aaron Lindenberg},
journal= {arXiv preprint arXiv:2203.06286},
year = {2022}
}