Grafton Andrea B, Dunkelberger Adam D, Simpkins Blake S, Triana Johan F, Hernández Federico J, Herrera Felipe, Owrutsky Jeffrey C
National Research Council Post-Doctoral Scholar, Washington, DC, USA.
Chemistry Division, Naval Research Laboratory, Washington, DC, USA.
Nat Commun. 2021 Jan 11;12(1):214. doi: 10.1038/s41467-020-20535-z.
Strong cavity coupling to molecular vibrations creates vibration-polaritons capable of modifying chemical reaction kinetics, product branching ratios, and charge transfer equilibria. However, the mechanisms impacting these molecular processes remain elusive. Furthermore, even basic elements determining the spectral properties of polaritons, such as selection rules, transition moments, and lifetimes are poorly understood. Here, we use two-dimensional infrared and filtered pump-probe spectroscopy to report clear spectroscopic signatures and relaxation dynamics of excited vibration-polaritons formed from the cavity-coupled NO band of nitroprusside. We apply an extended multi-level quantum Rabi model that predicts transition frequencies and strengths that agree well with our experiment. Notably, the polariton features decay ~3-4 times slower than the polariton dephasing time, indicating that they support incoherent population, a consequence of their partial matter character.
与分子振动的强腔耦合产生了能够改变化学反应动力学、产物分支比和电荷转移平衡的振动极化激元。然而,影响这些分子过程的机制仍然难以捉摸。此外,即使是决定极化激元光谱特性的基本要素,如选择规则、跃迁矩和寿命,也鲜为人知。在这里,我们使用二维红外光谱和滤波泵浦-探测光谱来报告由硝普钠的腔耦合NO带形成的激发振动极化激元的清晰光谱特征和弛豫动力学。我们应用了一个扩展的多能级量子拉比模型,该模型预测的跃迁频率和强度与我们的实验结果吻合良好。值得注意的是,极化激元特征的衰减速度比极化激元退相时间慢约3-4倍,这表明它们支持非相干布居,这是它们部分物质特性的结果。