Ulness Darin J, Turner Daniel B
Department of Chemistry, Concordia College , Moorhead, Minnesota 56562, United States.
Department of Chemistry, New York University , New York, New York 10003, United States.
J Phys Chem A. 2017 Dec 7;121(48):9211-9220. doi: 10.1021/acs.jpca.7b09443. Epub 2017 Nov 21.
Two-quantum two-dimensional electronic spectroscopy (2Q 2D ES) may provide a measure of electron-correlation energies in molecules. Attempts to obtain this profound but elusive signal have relied on experimental implementations using femtosecond laser pulses, which induce an overwhelming background signal of nonresonant response. Here we explore theoretically the signatures of electron correlation in coherent 2Q 2D ES measurements that use spectrally incoherent light, I 2Q 2D ES. One can use such fields to suppress nonresonant response, and therefore this method may better isolate the desired signature of electron correlation. Using an appropriate treatment of the multilevel Bloch electronic system, we find that I 2Q 2D ES presents an opportunity to measure electron-correlation energies in molecules.
双量子二维电子光谱(2Q 2D ES)可用于测量分子中的电子关联能。获取这一深刻但难以捉摸的信号的尝试一直依赖于使用飞秒激光脉冲的实验方法,而这些方法会产生压倒性的非共振响应背景信号。在此,我们从理论上探索了在使用光谱非相干光的相干2Q 2D ES测量(即I 2Q 2D ES)中电子关联的特征。人们可以利用这类光场抑制非共振响应,因此该方法可能能更好地分离出所需的电子关联特征。通过对多能级布洛赫电子系统进行适当处理,我们发现I 2Q 2D ES为测量分子中的电子关联能提供了一个契机。