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三重态系统的双量子二维电子光谱:实验与模拟。

Double-quantum two-dimensional electronic spectroscopy of a three-level system: Experiments and simulations.

机构信息

Electronic Properties of Materials, Faculty of Physics, University of Vienna, Strudlhofgasse 4, Vienna 1090, Austria.

出版信息

J Chem Phys. 2010 Sep 7;133(9):094505. doi: 10.1063/1.3474995.

Abstract

Double-quantum coherence two-dimensional (2Q2D) electronic spectroscopy is utilized to probe the dynamic fluctuations of electronic states in a solvated molecule at approximately twice the energy of the ground state bleach transition. The 2Q2D spectrum gives insight into the energetic position and spectral fluctuations (system-bath interaction) of the probed excited states. Combining it with single-quantum two-dimensional (1Q2D) electronic spectroscopy enables one to determine the strength of the excited state absorption transition and the relative detuning of electronic states, as well as the dynamics of the single-quantum coherence. To investigate the correlation of spectral fluctuations in different electronically excited states, we have carried out experiments on a solvated dye (Rhodamine 6G) with 23 fs pulses centered at the maximum of the linear absorption spectrum. The 2Q2D spectrum reveals three peaks of alternating signs with the major negative peak located at higher frequencies along the emission axis compared to the single positive peak. The 1Q2D spectrum, on the other hand, shows a negative peak stemming from excited state absorption at lower frequencies along the emission axis. Analysis of the signal in the homogeneous limit fails to account for this observation as well as the number of peaks in the 2Q2D spectrum. Employing a three-level model in which all time correlations of the third-order response function are accounted for via second-order cumulant expansion gives good agreement with both the 1Q2D and 2Q2D data. Furthermore, the analysis shows that the fluctuations of the probed electronic states are highly correlated, reflecting the modulation by a common nuclear bath and similarities in the nature of the electronic transitions.

摘要

双量子相干二维(2Q2D)电子光谱用于探测溶剂化分子中电子态的动态波动,其能量大约是基态漂白跃迁的两倍。2Q2D 光谱提供了关于被探测激发态的能量位置和光谱波动(系统-浴相互作用)的信息。将其与单量子二维(1Q2D)电子光谱相结合,可以确定激发态吸收跃迁的强度和电子态的相对失谐,以及单量子相干的动力学。为了研究不同电子激发态中光谱波动的相关性,我们使用中心波长位于线性吸收光谱最大值的 23fs 脉冲对溶剂化染料(若丹明 6G)进行了实验。2Q2D 光谱显示出三个具有交替符号的峰,主要负峰沿发射轴的频率高于单正峰。另一方面,1Q2D 光谱显示出一个来自较低频率的激发态吸收的负峰沿发射轴。在均匀极限下对信号的分析既无法解释这一观察结果,也无法解释 2Q2D 光谱中的峰数。通过三阶响应函数的所有时间相关项都通过二阶累积量展开来考虑的三能级模型与 1Q2D 和 2Q2D 数据吻合得很好。此外,分析表明,被探测电子态的波动高度相关,反映了由共同核浴调制以及电子跃迁性质的相似性。

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