首页> 外文期刊>Journal of Materials Science >Electron-phonon coupling and charge-transfer excitations in organic systems from many-body perturbation theory: the Fiesta code, an efficient Gaussian-basis implementation of the GW and Bethe-Salpeter formalisms
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Electron-phonon coupling and charge-transfer excitations in organic systems from many-body perturbation theory: the Fiesta code, an efficient Gaussian-basis implementation of the GW and Bethe-Salpeter formalisms

机译:基于多体扰动理论的有机系统中的电子-声子耦合和电荷转移激发:嘉年华规则,一种有效的GW重的高斯基实现和Bethe-Salpeter形式主义

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摘要

We review in this article recent developments within the framework of ab initio many-body perturbation theory aiming at providing an accurate description of the electronic and excitonic properties of π-conjugated organic systems currently used in organic photovoltaic cells. In particular, techniques such as the GW and Bethe-Salpeter formalisms are being benchmarked for acenes, fullerenes, porphyrins, phthalocyanines, and other molecules of interest for solar energy applications. It is shown that not only the electronic properties, but also the electron-phonon coupling matrix elements, and the charge-transfer excitations in donor/acceptor complexes, are accurately described. The present calculations on molecules containing up to a hundred atoms are based on a recently developed Gaussian auxiliary basis implementation of the GW and Bethe-Salpeter formalism, including full dynamics with contour-deformation techniques, as implemented in the Fiesta code.
机译:我们在本文中回顾了从头开始多体扰动理论框架内的最新进展,旨在提供对当前用于有机光伏电池的π共轭有机系统的电子和激子性质的准确描述。尤其是,诸如GW和Bethe-Salpeter形式主义之类的技术正在被用于对苯二甲炔,富勒烯,卟啉,酞菁和其他太阳能应用感兴趣的分子作为基准。结果表明,不仅精确地描述了电子性质,而且还描​​述了电子-声子耦合基体元素,以及给体/受体配合物中的电荷转移激发。当前对包含多达一百个原子的分子的计算是基于最近开发的GW和Bethe-Salpeter形式主义的高斯辅助基础实现,包括以Fiesta代码实现的具有轮廓变形技术的完整动力学。

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