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Vibronic spectra in condensed matter: A comparison of exact quantum mechanical and various semiclassical treatments for harmonic baths

机译:凝聚态的电子光谱:对谐波浴的精确量子力学和各种半经典处理的比较

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We consider the problem of calculating the vibronic absorption spectrum of a diatomic molecule coupled to a condensed phase environment, where all nuclear degrees of freedom are taken in the quadratic approximation, and where the two electronic states couple differently to the solvent. This simple model is used to examine several commonly used semiclassical approximations. The method of Kubo-Toyozawa is adapted to enable exact calculation of the real-time dipole autocorrelation function for the quantum mechanical treatment. Alternatively, we derive an expression for this correlation function in terms of a path-integral influence functional, which is not limited to a finite number of bath modes and could be applied to treat anharmonic solutes in condensed matter. We then obtain an analytical solution for the classical treatment of nuclear dynamics, and develop a mixed quantum-classical approach, where the dynamics of the diatomic vibrational mode is treated quantum mechanically and the bath is treated classically. It is shown that the mixed quantum-classical treatment provides better agreement with the exact quantum treatment than the other approximations for a wide range of parameters. Exact analytical results similar to the pure dephasing theory of Skinner and Hsu are obtained for the asymptotic long time behavior of the dipole autocorrelation functions. (C) 1998 American Institute of Physics. [S0021-9606(98)50303-0]. [References: 54]
机译:我们考虑了计算与凝聚相环境耦合的双原子分子的振动吸收光谱的问题,在凝聚相环境中,所有核自由度均取二次近似值,并且两个电子态以不同方式耦合至溶剂。这个简单的模型用于检查几种常用的半经典近似。 Kubo-Toyozawa的方法适用于量子力学处理的实时偶极自相关函数的精确计算。或者,我们根据路径积分影响函数导出此相关函数的表达式,该表达式不限于有限数量的浴模,并且可以用于处理凝聚态非谐溶质。然后,我们获得了对核动力学进行经典处理的解析解决方案,并开发了混合量子经典方法,其中对双原子振动模式的动力学进行量子力学处理,对镀液进行经典处理。结果表明,对于广泛的参数范围,混合量子经典方法与其他近似方法相比,提供了与精确量子方法更好的一致性。对于偶极自相关函数的渐近长时间行为,获得了与Skinner和Hsu的纯移相理论相似的精确分析结果。 (C)1998美国物理研究所。 [S0021-9606(98)50303-0]。 [参考:54]

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