Gelin Maxim F, Chen Lipeng, Domcke Wolfgang
School of Science, Hangzhou Dianzi University, Hangzhou 310018, China.
Max-Planck-Institut für Physik komplexer Systeme, Nöthnitzer Strasse 38, D-01187 Dresden, Germany.
Chem Rev. 2022 Dec 28;122(24):17339-17396. doi: 10.1021/acs.chemrev.2c00329. Epub 2022 Oct 24.
Femtosecond nonlinear spectroscopy is the main tool for the time-resolved detection of photophysical and photochemical processes. Since most systems of chemical interest are rather complex, theoretical support is indispensable for the extraction of the intrinsic system dynamics from the detected spectroscopic responses. There exist two alternative theoretical formalisms for the calculation of spectroscopic signals, the nonlinear response-function (NRF) approach and the spectroscopic equation-of-motion (EOM) approach. In the NRF formalism, the system-field interaction is assumed to be sufficiently weak and is treated in lowest-order perturbation theory for each laser pulse interacting with the sample. The conceptual alternative to the NRF method is the extraction of the spectroscopic signals from the solutions of quantum mechanical, semiclassical, or quasiclassical EOMs which govern the time evolution of the material system interacting with the radiation field of the laser pulses. The NRF formalism and its applications to a broad range of material systems and spectroscopic signals have been comprehensively reviewed in the literature. This article provides a detailed review of the suite of EOM methods, including applications to 4-wave-mixing and -wave-mixing signals detected with weak or strong fields. Under certain circumstances, the spectroscopic EOM methods may be more efficient than the NRF method for the computation of various nonlinear spectroscopic signals.
飞秒非线性光谱学是用于光物理和光化学过程时间分辨检测的主要工具。由于大多数具有化学研究价值的体系相当复杂,因此理论支持对于从检测到的光谱响应中提取体系的内在动力学是不可或缺的。对于光谱信号的计算,存在两种可供选择的理论形式,即非线性响应函数(NRF)方法和光谱运动方程(EOM)方法。在NRF形式体系中,假定体系与场的相互作用足够弱,并对与样品相互作用的每个激光脉冲采用最低阶微扰理论进行处理。NRF方法的概念替代方法是从量子力学、半经典或准经典EOM的解中提取光谱信号,这些方程描述了与激光脉冲辐射场相互作用的物质体系的时间演化。NRF形式体系及其在广泛的材料体系和光谱信号中的应用已在文献中得到全面综述。本文详细综述了EOM方法组,包括其在弱场或强场检测的四波混频和六波混频信号中的应用。在某些情况下,光谱EOM方法在计算各种非线性光谱信号时可能比NRF方法更有效。