Department of Chemistry, Technische Universität München, Garching D-85747, Germany.
J Chem Phys. 2013 Dec 7;139(21):214302. doi: 10.1063/1.4832876.
We performed simulations of the prototypical femtosecond "double-slit" experiment with strong pulsed laser fields for a chromophore in solution. The chromophore is modeled as a system with two electronic levels and a single Franck-Condon active underdamped vibrational mode. All other (intra- and inter-molecular) vibrational modes are accounted for as a thermal bath. The system-bath coupling is treated in a computationally accurate manner using the hierarchy equations of motion approach. The double-slit signal is evaluated numerically exactly without invoking perturbation theory in the matter-field interaction. We show that the strong-pulse double-slit signal consists of a superposition of N-wave-mixing (N = 2, 4, 6...) responses and can be split into population and coherence contributions. The former reveals the dynamics of vibrational wave packets in the ground state and the excited electronic state of the chromophore, while the latter contains information on the dephasing of electronic coherences of the chromophore density matrix. We studied the influence of heat baths with different coupling strengths and memories on the double-slit signal. Our results show that the double-slit experiment performed with strong (nonperturbative) pulses yields substantially more information on the photoinduced dynamics of the chromophore than the weak-pulse experiment, in particular, if the bath-induced dephasings are fast.
我们使用强脉冲激光场对溶液中的发色团进行了原型飞秒“双缝”实验的模拟。发色团被建模为一个具有两个电子能级和一个单弗朗克-康登(Franck-Condon)活跃的欠阻尼振动模式的系统。所有其他(分子内和分子间)振动模式都被视为热浴。系统-浴耦合采用运动方程层次结构方法以计算上精确的方式进行处理。双缝信号是通过在物质场相互作用中不诉诸微扰理论而进行精确数值计算得到的。我们表明,强脉冲双缝信号由 N 波混合(N = 2,4,6...)响应的叠加组成,并且可以分为种群和相干性贡献。前者揭示了发色团在基态和激发电子态中的振动波包的动力学,而后者包含有关发色团密度矩阵的电子相干消相的信息。我们研究了具有不同耦合强度和记忆的热浴对双缝信号的影响。我们的结果表明,与弱脉冲实验相比,使用强(非微扰)脉冲进行的双缝实验可以获得有关发色团光致动力学的更多信息,特别是如果浴致消相很快的话。