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Solvent-induced polarization dynamics and coherent two-dimensional spectroscopy: Dissipaton equation of motion approach

机译:溶剂诱导的极化动力学和相干二维光谱:运动的Dissipaton方程

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This work exploits the dissipaton equation of motion (DEOM) approach to study the solvent-induced non-Condon polarization dynamics and its two-dimensional coherent spectroscopy for model excitonic systems. DEOM is a second quantization generation of the celebrated hierarchical equations of motion theory, with the capability of accurate evaluation for both reduced system and hybrid bath dynamics. The underlying dissipaton algebra includes the generalized Wick's theorem and DEOM-space techniques for hybrid bath dynamics. Methods discussed also involve an efficient derivative-resum level truncation scheme that preserves the prescription invariance, and the mixed Heisenberg-Schrodinger picture approach for efficient simulation of nonlinear response functions. Our model simulations show clearly the correlated system-and-bath interference and the resulting Fano entanglement spectroscopy profiles. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作利用运动的耗散运动方程(DEOM)方法来研究溶剂诱导的非Condon极化动力学及其用于模型激子系统的二维相干光谱。 DEOM是著名的运动理论分层方程式的第二次量化生成,具有对减少的系统动力学和混合浴动力学进行精确评估的能力。基本的dissipaton代数包括用于混合浴动力学的广义Wick定理和DEOM空间技术。讨论的方法还涉及保留处方不变性的有效导数-摘要级截断方案,以及用于有效仿真非线性响应函数的混合Heisenberg-Schrodinger图片方法。我们的模型仿真清楚地显示了相关的系统和浴场干涉以及由此产生的Fano纠缠光谱图。 (C)2016 Elsevier B.V.保留所有权利。

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