论文标题
一种准确有效的Ehrenfest动力学方法,用于计算线性和非线性电子光谱
An accurate and efficient Ehrenfest dynamics approach for calculating linear and nonlinear electronic spectra
论文作者
论文摘要
线性和非线性电子光谱为探测电子能的吸收和转移提供了重要的工具。在这里,我们介绍了一种纯状态eHrenfest方法,以获取适用于具有大量激发态和复杂化学环境的系统的准确线性和非线性光谱。我们通过将初始条件表示为纯状态的总和,并将多时间相关函数展开到Schrödinger图片中来实现这一目标。通过这样做,我们表明,人们可以比先前使用的Ehrenfest方法获得显着的准确性,并且在初始条件是激发态之间的连贯性的情况下,这些好处尤其明显。尽管在计算线性电子光谱时不会出现这种初始条件,但它们在捕获多维光谱镜中起着至关重要的作用。我们通过证明它能够定量捕获慢速浴机中Frenkel Ickiton模型的精确线性,2DE和泵探针光谱来证明我们的方法的性能,甚至能够在快速浴机中重现主要光谱特征。
Linear and nonlinear electronic spectra provide an important tool to probe the absorption and transfer of electronic energy. Here we introduce a pure state Ehrenfest approach to obtain accurate linear and nonlinear spectra that is applicable to systems with large numbers of excited states and complex chemical environments. We achieve this by representing the initial conditions as sums of pure states and unfolding multi-time correlation functions into the Schrödinger picture. By doing this we show that one can obtain significant improvements in accuracy over the previously used projected Ehrenfest approach and that these benefits are particularly pronounced in cases where the initial condition is a coherence between excited states. While such initial conditions do not arise when calculating linear electronic spectra, they play a vital role in capturing multidimensional spectroscopies. We demonstrate the performance of our method by showing that it is able to quantitatively capture the exact linear, 2DES, and pump-probe spectra for a Frenkel exciton model in slow bath regimes and is even able to reproduce the main spectral features in fast bath regimes.