论文标题
管状分子聚集体中的激子定位:尺寸效应和光学响应
Exciton localization in tubular molecular aggregates: size effects and optical response
论文作者
论文摘要
我们研究了光学活性分子的无序管状聚集体的激子定位和产生的光学响应。先前已经证明,由于远距离偶极 - 偶极相互作用的综合作用以及骨料的较高维(不是真正的一维)性质,因此这种管状结构允许在超过一千个分子上脱落的激子。如此大的离域大小促使问题在实验系统中的何种程度上仍然可以由骨料大小(直径和长度)确定,以及这如何影响骨料的光学响应和动力学。我们使用圆柱模型结构中的激子态的数值模拟对尺寸效果进行了系统研究,该模拟是受到氰胺染料分子的先前衍生几何形状(C8S3)的圆柱形聚集体的启发。为了表征激子定位,我们计算了激子函数的参与比和自相关函数。另外,我们计算状态的密度和吸收光谱。我们发现管半径对与实验相关的参数范围的定位和光学特性的强烈影响。此外,令人惊讶的是,我们发现即使对于管道长达750 nm,该定位尺寸也受到与实验情况相关的疾病值的长度的限制,而在吸收光谱中,管子长度仍会在管长长度长达约150 nm的长度上发生可观察到的效果。后者可以解释在溴取代的C8S3聚集体衰老过程中观察到的光谱的变化。对于弱疾病,激子波函数表现出散布的分形性质,类似于二维无序系统中的准粒子。
We study the exciton localization and resulting optical response for disordered tubular aggregates of optically active molecules. It has been shown previously that such tubular structures allow for excitons delocalized over more than a thousand molecules, owing to the combined effects of long-range dipole-dipole interactions and the higher-dimensional (not truly one-dimensional) nature of the aggregate. Such large delocalization sizes prompt the question to what extent in experimental systems the delocalization may still be determined by the aggregate size (diameter and length) and how this affects the aggregate's optical response and dynamics. We perform a systematic study of the size effects on the localization properties, using numerical simulations of the exciton states in a cylindrical model structure inspired by the previously derived geometry of a cylindrical aggregate of cyanine dye molecules (C8S3). To characterize the exciton localization, we calculate the participation ratio and the autocorrelation function of the exciton wave function. Also, we calculate the density of states and absorption spectrum. We find strong effects of the tube's radius on the localization and optical properties in the range of parameters relevant to experiment. In addition, surprisingly, we find that even for tubes as long as 750 nm, the localization size is limited by the tube's length for disorder values that are relevant to experimental circumstances, while observable effects of the tube's length in the absorption spectrum still occur for tube lengths up to about 150 nm. The latter may explain changes in the optical spectra observed during the aging process of bromine-substituted C8S3 aggregates. For weak disorder, the exciton wave functions exhibit a scattered, fractal-like nature, similar to the quasi-particles in two-dimensional disordered systems.