论文标题
在聚丙烯链中激子 - 两极的第一原理建模
First principles modeling of exciton-polaritons in polydiacetylene chains
论文作者
论文摘要
有机材料中的激子 - 果龙是杂种状态,这些状态是由于光子的强相互作用和这些材料托管的界面激子的强烈相互作用所致。有机偏光子对光电应用具有极大的兴趣,但是由于缺乏量化这些系统中光 - 摩尔 - 摩擦相互作用的第一原理方法,并允许制定分子设计规则。在这里,我们开发了这样的第一原理方法,从而量化了光结合的相互作用。我们通过研究共轭聚合物聚乙二醇的变体来体现我们的方法,并表明,大型聚合物偶联长度对于强烈的激子 - 光子偶联耦合至关重要,因此是基于无静态障碍的纯结构的重要性。通过与我们的实验反射率测量值进行比较,我们表明,在吸收中由声子侧带表现出的激子与振动的耦合对在一系列频率范围内的轻度耦合的大小有很大的影响。我们的方法为对有机材料的偏振子有了更深入的了解开辟了道路,我们强调说,对激子 - 光子相互作用进行定量准确的计算将需要考虑所有偶然的疾病来源。
Exciton-polaritons in organic materials are hybrid states that result from the strong interaction of photons and the bound excitons that these materials host. Organic polaritons hold great interest for optoelectronic applications, however progress towards this end has been impeded by the lack of a first principles approach that quantifies light-matter interactions in these systems, and which would allow the formulation of molecular design rules. Here we develop such a first principles approach, quantifying light-matter interactions. We exemplify our approach by studying variants of the conjugated polymer polydiacetylene, and we show that a large polymer conjugation length is critical towards strong exciton-photon coupling, hence underlying the importance of pure structures without static disorder. By comparing to our experimental reflectivity measurements, we show that the coupling of excitons to vibrations, manifested by phonon side bands in the absorption, has a strong impact on the magnitude of light-matter coupling over a range of frequencies. Our approach opens the way towards a deeper understanding of polaritons in organic materials, and we highlight that a quantitatively accurate calculation of the exciton-photon interaction would require accounting for all sources of disorder self-consistently.