论文标题
$π$偶联的聚合物中激子的多维相干光谱
Multidimensional coherent spectroscopy of excitons in $π$-conjugated polymers
论文作者
论文摘要
$π$ - 偶联的聚合物的光物理在过去三十年中引起了人们的极大兴趣,因为它们具有有机半导体性能。可以通过多种线性光谱镜像光学探测主要的光涂,Frenkel激素,从而提供了有关激子耦合的强度,激子相干长度以及无序能量景观的性质的大量信息。尽管如此,与非线性相干技术相比,信息中存在固有的局限性。这样的例子是对激子光谱线形的均匀和不均匀扩展的贡献,激子 - 振动耦合的详细光谱结构以及光激励之间的相关性,包括ixciton-Chargege-Chargege-Chargege和Ixpiton-Exciton-Exciton相关性。在目前的工作中,我们讨论了二维连贯的激发光谱谱的作用,并回顾了其在揭示$π$缀合的聚合物以及聚合物的基本光体物理学方面的应用:富勒烯混合物,我们认为这些技术现在是有价值的主流材料材料光学探针。
The photophysics of $π$-conjugated polymers has been of considerable interest over the last three decades because of their organic semiconductor properties. Primary photoexcitations, Frenkel excitons, can be probed optically by means of numerous linear spectroscopies, providing a wealth of information on the the strength of excitonic coupling, the exciton coherence length, and on the nature of the disordered energy landscape. Nonetheless, there are intrinsic limitations in the information that can be obtained with linear spectroscopy compared to non-linear coherent techniques. Examples of this are the separation of homogeneous and inhomogeneous broadening contributions to the total exciton spectral lineshape, the detailed spectral structure of exciton-vibrational coupling, and correlations between optical excitations, including exciton-charge and exciton-exciton correlations. In the present work, we discuss the role of two-dimensional coherent excitation spectroscopy and review its applications towards unravelling the basic photophysics of $π$-conjugated polymers as well as polymer:fullerene blends, and we argue that these techniques are now valuable mainstream materials optical probes.