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首页> 外文期刊>The Journal of Chemical Physics >CURVE CROSSING PROBLEM WITH DISSIPATION - UNIFORM RATE EXPRESSION IN DIABATIC REPRESENTATION
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CURVE CROSSING PROBLEM WITH DISSIPATION - UNIFORM RATE EXPRESSION IN DIABATIC REPRESENTATION

机译:耗散的曲线交叉问题-糖尿病表示中的统一速率表达

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摘要

The approach based on identification of the quasi-ballistic collective mode using the variational transition state theory (VTST) is applied to evaluation of the radiationless transition rate in the diabatic representation. The results for the rate match smoothly with the corresponding results derived in the adiabatic representation. This implies that the uniform expression for the rate constitutes a good approximation to the exact result. Analytic expression for the renormalized barrier frequency for Ohmic dissipation in the high barrier limit is derived. The result for the adiabaticity parameter in the strong damping regime reduces to Zusman's result. The effect of non-Ohmic dissipation on the electron transfer kinetics in polar solvents is explored. A new procedure for the determination of the quasi-ballistic mode, based on variation of the total flux, is suggested. The procedure reduces to the VTST procedure in the adiabatic limit. In the nonadiabatic limit the quasi-ballistic mode coincides with the original reaction coordinate independently of the dissipation strength. (C) 1996 American Institute of Physics. [References: 55]
机译:该方法基于使用变分过渡状态理论(VTST)识别准弹道集体模式的方法,被用于评估非绝热表示中的无辐射过渡速率。速率的结果与绝热表示中得出的相应结果平滑匹配。这意味着速率的统一表达式构成了精确结果的良好近似。推导了高势垒极限下欧姆耗散重新规范化的势垒频率的解析表达式。在强阻尼状态下绝热参数的结果减少到祖斯曼的结果。探索了非欧姆耗散对极性溶剂中电子转移动力学的影响。提出了一种基于总通量变化确定准弹道模式的新方法。该程序在绝热极限内简化为VTST程序。在非绝热极限中,准弹道模式与原始反应坐标一致,而与耗散强度无关。 (C)1996年美国物理研究所。 [参考:55]

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