A second-order kinetic model for global analysis of vibrational polariton dynamics

Haochuan Mao, Wei Xiong
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Abstract

The interaction between cavity photons and molecular vibrations leads to the formation of vibrational polaritons, which have demonstrated the ability to influence chemical reactivity and change material characteristics. Although ultrafast spectroscopy has been extensively applied to study vibrational polaritons, the nonlinear relationship between signal and quantum state population complicates the analysis of their kinetics. Here, we employ a second-order kinetic model and transform matrix method (TMM) to develop an effective model to capture the nonlinear relationship between the two-dimensional IR (or pump–probe) signal and excited state populations. We test this method on two types of kinetics: a sequential relaxation from the second to the first excited states of dark modes, and a Raman state relaxing into the first excited state. By globally fitting the simulated data, we demonstrate accurate extraction of relaxation rates and the ability to identify intermediate species by comparing the species spectra with theoretical ground truth, validating our method. This study demonstrates the efficacy of a second-order TMM approximation in capturing essential spectral features with up to 10% excited state population, simplifying global analysis and enabling straightforward extraction of kinetic parameters, thus empowering our methodology in understanding excited-state dynamics in polariton systems.
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振动极化子动力学全局分析的二阶动力学模型
空腔光子与分子振动之间的相互作用导致了振动极化子的形成,而振动极化子已证明能够影响化学反应性并改变材料特性。虽然超快光谱已被广泛应用于研究振动极化子,但信号与量子态群之间的非线性关系使其动力学分析变得复杂。在此,我们采用二阶动力学模型和变换矩阵法(TMM)建立了一个有效模型,以捕捉二维红外(或泵探)信号和激发态种群之间的非线性关系。我们在两种动力学类型上测试了这种方法:从暗模式的第二激发态到第一激发态的顺序弛豫,以及拉曼态弛豫到第一激发态。通过对模拟数据进行全局拟合,我们证明了弛豫速率的精确提取,以及通过比较物种光谱与理论基本事实来识别中间物种的能力,从而验证了我们的方法。这项研究证明了二阶 TMM 近似在捕捉多达 10% 激发态种群的基本光谱特征、简化全局分析和直接提取动力学参数方面的功效,从而增强了我们理解极化子系统激发态动力学的方法。
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