Borges Lucas, Schnappinger Thomas, Kowalewski Markus
Department of Physics, Stockholm University, AlbaNova University Center, SE-106 91 Stockholm, Sweden.
J Chem Phys. 2024 Jul 28;161(4). doi: 10.1063/5.0214362.
Strong coupling of organic molecules to the vacuum field of a nanoscale cavity can be used to modify their chemical and physical properties. We extend the Tavis-Cummings model for molecular ensembles and show that the often neglected interaction terms arising from the static dipole moment and the dipole self-energy are essential for a correct description of the light-matter interaction in polaritonic chemistry. On the basis of a full quantum description, we simulate the excited-state dynamics and spectroscopy of MgH+ molecules resonantly coupled to an optical cavity. We show that the inclusion of static dipole moments and the dipole self-energy is necessary to obtain a consistent model. We construct an efficient two-level system approach that reproduces the main features of the real molecular system and may be used to simulate larger molecular ensembles.
有机分子与纳米级腔的真空场的强耦合可用于改变其化学和物理性质。我们扩展了分子系综的塔维斯 - 卡明斯模型,并表明,由静态偶极矩和偶极自能产生的常常被忽视的相互作用项,对于正确描述极化子化学中的光与物质相互作用至关重要。基于完整的量子描述,我们模拟了与光学腔共振耦合的MgH⁺分子的激发态动力学和光谱。我们表明,纳入静态偶极矩和偶极自能对于获得一个一致的模型是必要的。我们构建了一种有效的二能级系统方法,该方法再现了真实分子系统的主要特征,并可用于模拟更大的分子系综。