论文标题
激子离域对有机半导体中激子振动相互作用的影响
The impact of exciton delocalization on exciton-vibration interactions in organic semiconductors
论文作者
论文摘要
有机半导体同时表现出单个分子和延伸晶体的特性。它们托管的强烈结合的激子通常在分子极限中描述,但是激子可以在许多分子上脱位,从而提出了一个问题,即扩展晶体性质的重要性。使用准确的绿色基于函数的方法,用于电子结构和非扰动有限差异方法进行激子振动耦合,我们描述了与分子和晶体自由度同时同时使用的激子相互作用。我们发现,激活的晶体声子主要耦合到离域状态,而分子量子波动主要耦合到局部状态。基于这张图片,我们定量预测和解释有机半导体的呈激素峰的温度和压力依赖性,我们通过实验确认,并开发了一种简单的实验协议,以探测激子定位率。总体而言,我们提供了有机半导体中激子离域和振动效应的统一图片,并核对有限分子簇和周期性分子固体的互补观点。
Organic semiconductors exhibit properties of individual molecules and extended crystals simultaneously. The strongly bound excitons they host are typically described in the molecular limit, but excitons can delocalize over many molecules, raising the question of how important the extended crystalline nature is. Using accurate Green's function based methods for the electronic structure and non-perturbative finite difference methods for exciton-vibration coupling, we describe exciton interactions with molecular and crystal degrees of freedom concurrently. We find that the degree of exciton delocalization controls these interactions, with thermally activated crystal phonons predominantly coupling to delocalized states, and molecular quantum fluctuations predominantly coupling to localized states. Based on this picture, we quantitatively predict and interpret the temperature and pressure dependence of excitonic peaks in the acene series of organic semiconductors, which we confirm experimentally, and we develop a simple experimental protocol for probing exciton delocalization. Overall, we provide a unified picture of exciton delocalization and vibrational effects in organic semiconductors, reconciling the complementary views of finite molecular clusters and periodic molecular solids.