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首页> 外文期刊>The Journal of Chemical Physics >Transition state theory for activated systems with driven anharmonic barriers
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Transition state theory for activated systems with driven anharmonic barriers

机译:具有驱动Anharmonic障碍的激活系统过渡状态理论

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Classical transition state theory has been extended to address chemical reactions across barriers that are driven and anharmonic. This resolves a challenge to the naive theory that necessarily leads to recrossings and approximate rates because it relies on a fixed dividing surface. We develop both perturbative and numerical methods for the computation of a time-dependent recrossing-free dividing surface for a model anharmonic system in a solvated environment that interacts strongly with an oscillatory external field. We extend our previous work, which relied either on a harmonic approximation or on periodic force driving. We demonstrate that the reaction rate, expressed as the long-time flux of reactive trajectories, can be extracted directly from the stability exponents, namely, Lyapunov exponents, of the moving dividing surface. Comparison to numerical results demonstrates the accuracy and robustness of this approach for the computation of optimal (recrossing-free) dividing surfaces and reaction rates in systems with Markovian solvation forces. The resulting reaction rates are in strong agreement with those determined from the long-time flux of reactive trajectories. Published by AIP Publishing.
机译:经典过渡状态理论已扩展到解决驱动的障碍的化学反应和anharmonic。这解决了对Naive理论的挑战,这一切都必须导致休养和近似率,因为它依赖于固定的分隔表面。我们开发扰动和数值方法,以计算模型无谐波系统的时间依赖的无折叠分裂表面,以便在腐蚀的环境中与振荡外部领域强烈地相互作用。我们扩展了我们以前的工作,依赖于谐波近似或周期性驾驶。我们证明,作为反应轨迹的长时间通量表示的反应速率可以直接从稳定性指数中提取,即Lyapunov指数的运动分裂表面。与数值结果的比较展示了这种方法的准确性和稳健性,用于计算具有Markovian溶剂化力的系统中的最佳(无折腾)分割表面和反应速率。所得反应速率与从反应轨迹的长时间通量确定的反应率强烈一致。通过AIP发布发布。

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