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Determining the static electronic and vibrational energy correlations via two-dimensional electronic-vibrational spectroscopy

机译:通过二维电子振动光谱法确定静态电子能量和振动能量的相关性

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摘要

Changes in the electronic structure of pigments in protein environments and of polar molecules in solution inevitably induce a re-adaption of molecular nuclear structure. Both changes of electronic and vibrational energies can be probed with visible or infrared lasers, such as two-dimensional electronic spectroscopy or vibrational spectroscopy. The extent to which the two changes are correlated remains elusive. The recent demonstration of two-dimensional electronic-vibrational (2DEV) spectroscopy potentially enables a direct measurement of this correlation experimentally. However, it has hitherto been unclear how to characterize the correlation from the spectra. In this paper, we present a theoretical formalism to demonstrate the slope of the nodal line between the excited state absorption and ground state bleach peaks in the spectra as a characterization of the correlation between electronic and vibrational transition energies. We also show the dynamics of the nodal line slope is correlated to the vibrational spectral dynamics. Additionally, we demonstrate the fundamental 2DEV spectral line-shape of a monomer with newly developed response functions. (C) 2015 AIP Publishing LLC.
机译:蛋白质环境中颜料的电子结构和溶液中极性分子的电子结构变化不可避免地引起分子核结构的重新适应。电子能量和振动能量的变化都可以用可见光或红外激光探测,例如二维电子光谱或振动光谱。这两个变化相关的程度仍然难以捉摸。二维电子振动(2DEV)光谱学的最新演示有望通过实验直接测量这种相关性。但是,迄今为止,如何表征光谱的相关性还不清楚。在本文中,我们提出了一种理论上的形式主义,以证明光谱中激发态吸收峰和基态漂白峰之间的结线斜率可以表征电子和振动跃迁能之间的相关性。我们还显示了节点线斜率的动力学与振动频谱动力学相关。此外,我们演示了具有新开发的响应函数的单体的基本2DEV谱线形状。 (C)2015 AIP Publishing LLC。

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