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理解水和重水中振动极化激元态的本质。

Understanding the Nature of Vibro-Polaritonic States in Water and Heavy Water.

作者信息

Kadyan Akhila, Suresh Monu P, Johns Ben, George Jino

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER), Mohali, Punjab, 140306, India.

出版信息

Chemphyschem. 2024 Feb 16;25(4):e202300560. doi: 10.1002/cphc.202300560. Epub 2024 Jan 8.

Abstract

Very recent experiments on vibrational strong coupling tend to modify chemical reactivity, energy transfer, and many other physical properties of the coupled system. This is achieved without external stimuli and is very sensitive to the vibrational envelope. Water is an excellent vibrational oscillator, which is being used for similar experiments. However, the inhomogeneously broad OH/OD stretching vibrational band make it complicated to characterize the vibro-polaritonic states spectroscopically. In this paper, we performed vibrational strong coupling and mapped the evolution of vibro-polaritonic branches from low to high concentration of H O and measured the on-set of strong coupling. The refractive index dispersion is correlated with the cavity tuning experiments. These results are further compared with transfer matrix simulations. Simulated data deviate as noted in the dispersion spectra as the system enters into ultra-strong coupling due to enhanced self-dipolar interactions. Hopfield coefficients calculation shows that even at ±400 cm detuning, the vibro-polaritonic states still possess hybrid characteristics. We systematically varied the concentration of H O and mapped the weak, intermediate, and strong coupling regimes to understand the role of inhomogeneously broad OH/OD stretching vibrational band. Our finding may help to better understand the role of H O/D O strong coupling in the recent polaritonic chemistry experiments.

摘要

近期关于振动强耦合的实验倾向于改变耦合体系的化学反应性、能量转移及许多其他物理性质。这一过程无需外部刺激,且对振动包络非常敏感。水是一种出色的振动振荡器,正被用于类似实验。然而,非均匀展宽的OH/OD伸缩振动带使得通过光谱表征振子 - 极化激元态变得复杂。在本文中,我们进行了振动强耦合实验,绘制了从低浓度到高浓度H₂O的振子 - 极化激元分支的演化图,并测量了强耦合的起始点。折射率色散与腔调谐实验相关。这些结果进一步与转移矩阵模拟进行了比较。由于增强的自偶极相互作用,当系统进入超强耦合时,模拟数据在色散光谱中出现了偏差。霍普菲尔德系数计算表明,即使在失谐±400 cm⁻¹时,振子 - 极化激元态仍具有混合特性。我们系统地改变了H₂O的浓度,绘制了弱耦合、中间耦合和强耦合区域,以了解非均匀展宽的OH/OD伸缩振动带的作用。我们的发现可能有助于更好地理解H₂O/D₂O强耦合在近期极化激元化学实验中的作用。

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