Coupled Cluster Theory for Molecular Polaritons: Changing Ground and Excited States

Tor S. Haugland, Enrico Ronca, Eirik F. Kjønstad, Á. Rubio, H. Koch
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引用次数: 83

Abstract

We present an ab initio correlated approach to study molecules that interact strongly with quantum fields in an optical cavity. Quantum electrodynamics coupled cluster theory provides a non-perturbative description of cavity-induced effects in ground and excited states. Using this theory, we show how quantum fields can be used to manipulate charge transfer and photochemical properties of molecules. We propose a strategy to lift electronic degeneracies and induce modifications in the ground state potential energy surface close to a conical intersection.
分子极化子的耦合簇理论:改变基态和激发态
我们提出了一种从头算相关方法来研究光学腔中与量子场强相互作用的分子。量子电动力学耦合簇理论提供了基态和激发态腔诱导效应的非微扰描述。利用这一理论,我们展示了如何利用量子场来操纵分子的电荷转移和光化学性质。我们提出了一种策略来解除电子简并,并在接近圆锥相交的基态势能面诱导修改。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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