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Simulating Energy Relaxation in Pump-Probe Vibrational Spectroscopy of Hydrogen-Bonded Liquids

机译:在氢键液体的泵浦探针振动光谱中模拟能量弛豫

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摘要

We introduce a nonequilibrium molecular dynamics simulation approach, based on the generalized Langevin equation, to study vibrational energy relaxation in pump-probe spectroscopy. A colored noise thermostat is used to selectively excite a set of vibrational modes, leaving the other modes nearly unperturbed, to mimic the effect of a monochromatic laser pump. Energy relaxation is probed by analyzing the evolution of the system after excitation in the microcanonical ensemble, thus providing direct information about the energy redistribution paths at the molecular level and their time scale. The method is applied to hydrogen-bonded molecular liquids, specifically deuterated methanol and water, providing a robust picture of energy relaxation at the molecular scale.
机译:我们基于广义Langevin方程引入非平衡分子动力学模拟方法,以研究泵浦探针光谱中的振动能量弛豫。有色噪声恒温器用于选择性地激发一组振动模式,而其他模式几乎不受干扰,以模仿单色激光泵的效果。通过在微规范集合中激发后分析系统的演化来探究能量弛豫,从而提供有关在分子水平及其时间尺度上的能量重新分布路径的直接信息。该方法适用于氢键分子液体,特别是氘代甲醇和水,可提供分子级能量弛豫的可靠图像。

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