论文标题
光学腔中分子间相互作用:一项从头算研究
Intermolecular interactions in optical cavities: an ab initio QED study
论文作者
论文摘要
与共价键相比,分子间键很弱,但是它们足够强,可以影响大分子系统的性质。在这项工作中,我们研究了光腔内部强烈的耦合如何改变这些分子间力。我们进行了当前可用的电子 - photon方法论之间的详细比较。腔内的电磁场可以调节弱结合的复合物的基态特性。控制场极化,可以稳定或不稳定相互作用,并且可以改变电子密度,偶极矩和极化。我们证明了电子 - 光子相关性是描述强光耦合中分子间相互作用的基础。这项工作提出光腔是一种新颖的工具,用于操纵和控制分子和材料的基态特性,溶剂效应以及分子间相互作用。
Intermolecular bonds are weak compared to covalent bonds, but they are strong enough to influence the properties of large molecular systems. In this work, we investigate how strong light-matter coupling inside an optical cavity can modify these intermolecular forces. We perform a detailed comparison between currently available ab initio electron-photon methodologies. The electromagnetic field inside the cavity can modulate the ground state properties of weakly bound complexes. Controlling the field polarization, the interactions can be stabilized or destabilized, and electron densities, dipole moments, and polarizabilities can be altered. We demonstrate that electron-photon correlation is fundamental to describe intermolecular interactions in strong light-matter coupling. This work proposes optical cavities as a novel tool to manipulate and control ground state properties, solvent effects, and intermolecular interactions for molecules and materials.