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二维电子斯塔克光谱学研究光合二聚体。

Two-dimensional electronic Stark spectroscopy of a photosynthetic dimer.

机构信息

Department of Physics, University of Michigan, 450 Church St., Ann Arbor, Michigan 48109, USA.

Institute of Chemical Physics, Faculty of Physics, Vilnius University, Sauletekio 9-III, 10222 Vilnius, Lithuania.

出版信息

J Chem Phys. 2020 Oct 14;153(14):144203. doi: 10.1063/5.0021529.

Abstract

Stark spectroscopy, which measures changes in the linear absorption of a sample in the presence of an external DC electric field, is a powerful experimental tool for probing the existence of charge-transfer (CT) states in photosynthetic systems. CT states often have small transition dipole moments, making them insensitive to other spectroscopic methods, but are particularly sensitive to Stark spectroscopy due to their large permanent dipole moment. In a previous study, we demonstrated a new experimental method, two-dimensional electronic Stark spectroscopy (2DESS), which combines two-dimensional electronic spectroscopy (2DES) and Stark spectroscopy. In order to understand how the presence of CT states manifest in 2DESS, here, we perform computational modeling and calculations of 2DESS as well as 2DES and Stark spectra, studying a photosynthetic dimer inspired by the photosystem II reaction center. We identify specific cases where qualitatively different sets of system parameters produce similar Stark and 2DES spectra but significantly different 2DESS spectra, showing the potential for 2DESS to aid in identifying CT states and their coupling to excitonic states.

摘要

斯塔克光谱学通过测量样品在外部直流电场存在下的线性吸收变化,是探测光合作用系统中电荷转移(CT)态存在的有力实验工具。CT 态通常具有较小的跃迁偶极矩,因此对其他光谱方法不敏感,但由于其具有较大的永久偶极矩,因此对斯塔克光谱学特别敏感。在之前的研究中,我们展示了一种新的实验方法,二维电子斯塔克光谱学(2DESS),它结合了二维电子光谱学(2DES)和斯塔克光谱学。为了了解 CT 态在 2DESS 中的表现方式,我们在这里进行了计算建模和 2DESS 以及 2DES 和斯塔克光谱的计算,研究了受光合作用 II 反应中心启发的光合作用二聚体。我们确定了一些具体情况,在这些情况下,不同的系统参数集产生了相似的斯塔克和 2DES 光谱,但明显不同的 2DESS 光谱,这表明 2DESS 有可能有助于识别 CT 态及其与激子态的耦合。

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