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首页> 外文期刊>The Journal of Chemical Physics >Vibrational spectroscopy of a harmonic oscillator system nonlinearly coupled to a heat bath
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Vibrational spectroscopy of a harmonic oscillator system nonlinearly coupled to a heat bath

机译:非线性耦合至热浴的谐波振荡器系统的振动光谱

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摘要

Vibrational relaxation of a harmonic oscillatory nonlinearly coupled to a heat bath is investigated by the Gaussian-Markovian quantum Fokker-Planck equation approach. The system-bath interaction is assumed to be linear in the bath coordinate, but linear plus square in the system coordinate modeling the elastic and inelastic relaxation mechanisms. Interplay of the two relaxation processes induced by the linear-linear and square-linear interactions in Raman or infrared spectra is discussed for various system-bath couplings, temperatures, and correlation times for the bath fluctuations. The one-quantum coherence state created through the interaction with the pump laser pulse relaxes through different pathways in accordance with the mechanisms of the system-bath interactions. Relations between the present theory, Redfield theory, and stochastic theory are also discussed.
机译:通过高斯-马尔可夫量子福克-普朗克方程方法研究了与加热浴非线性耦合的谐振子的振动松弛。假设系统与浴之间的相互作用在浴坐标系中是线性的,但是在系统坐标中线性加平方的模型是对弹性和非弹性松弛机制进行建模的。对于各种系统-浴耦合,温度和浴波动的相关时间,讨论了由拉曼光谱或红外光谱中的线性-线性和平方线性相互作用引起的两个弛豫过程的相互作用。通过与泵浦激光脉冲的相互作用产生的单量子相干状态根据系统-浴相互作用的机制通过不同的途径松弛。还讨论了当前理论,雷德菲尔德理论和随机理论之间的关系。

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