并五苯
激子
声子
材料科学
比克西顿
散射
放松(心理学)
各向异性
凝聚态物理
声子散射
Crystal(编程语言)
半导体
光电子学
物理
光学
量子力学
薄膜晶体管
心理学
社会心理学
电极
计算机科学
程序设计语言
作者
Galit Cohen,Jonah B. Haber,Jeffrey B. Neaton,Diana Y. Qiu,Sivan Refaely‐Abramson
标识
DOI:10.1103/physrevlett.132.126902
摘要
Nonradiative exciton relaxation processes are critical for energy transduction and transport in optoelectronic materials, but how these processes are connected to the underlying crystal structure and the associated electron, exciton, and phonon band structures, as well as the interactions of all these particles, is challenging to understand. Here, we present a first-principles study of exciton-phonon relaxation pathways in pentacene, a paradigmatic molecular crystal and optoelectronic semiconductor. We compute the momentum- and band-resolved exciton-phonon interactions, and use them to analyze key scattering channels. We find that both exciton intraband scattering and interband scattering to parity-forbidden dark states occur on the same $\ensuremath{\sim}100\text{ }\text{ }\mathrm{fs}$ timescale as a direct consequence of the longitudinal-transverse splitting of the bright exciton band. Consequently, exciton-phonon scattering exists as a dominant nonradiative relaxation channel in pentacene. We further show how the propagation of an exciton wave packet is connected with crystal anisotropy, which gives rise to the longitudinal-transverse exciton splitting and concomitant anisotropic exciton and phonon dispersions. Our results provide a framework for understanding the role of exciton-phonon interactions in exciton nonradiative lifetimes in molecular crystals and beyond.
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