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Two-Dimensional Spectroscopy of Coupled Vibrations with the Optimized Mean-Trajectory Approximation

机译:最佳耦合平均轨迹近似的二维振动光谱

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摘要

The optimized mean-trajectory (OMT) approximation is a semiclassical representation of the nonlinear vibrational response function used to compute multidimensional infrared spectra. In this method, response functions are calculated from a sequence of classical trajectories linked by discontinuities representing the effects of radiation-matter interactions, thus providing an approximation to quantum dynamics using classical inputs. This approach was previously formulated and assessed numerically for a single anharmonic degree of freedom. Our previous work is generalized here in two respects. First, the derivation of the OMT is extended to any number of coupled anharmonic vibrations by determining semiclassical approximations for pairs of double-sided Feynman diagrams. Second, an efficient numerical procedure is developed for calculating two-dimensional infrared spectra of coupled anharmonic vibrations in the OMT approximation. The OMT approximation is shown to reproduce the fundamental features of the quantum response function including both coherence and population dynamics.
机译:优化的平均轨迹(OMT)逼近是用于计算多维红外光谱的非线性振动响应函数的半经典表示。在这种方法中,响应函数是根据一系列经典轨迹计算的,这些轨迹由代表辐射-物质相互作用影响的不连续性链接,从而使用经典输入为量子动力学提供了近似值。先前已针对单个非谐自由度制定了此方法并对其进行了数值评估。我们以前的工作在两个方面进行了概括。首先,通过确定成对的双面费曼图对的半经典近似,将OMT的推导扩展到任意数量的耦合非谐振动。其次,开发了一种有效的数值程序,用于以OMT近似值计算耦合的非谐振动的二维红外光谱。显示OMT近似可重现量子响应函数的基本特征,包括相干性和总体动力学。

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