Craig Ian R, Thoss Michael, Wang Haobin
Department of Chemistry, Technical University of Munich, 85748 Garching, Germany.
J Chem Phys. 2007 Oct 14;127(14):144503. doi: 10.1063/1.2772265.
The recently proposed multilayer multiconfiguration time-dependent Hartree (ML-MCTDH) approach to evaluating reactive quantum dynamics is applied to two model condensed-phase proton transfer reactions. The models consist of a one-dimensional double-well "system" that is bilinearly coupled to a "bath" of harmonic oscillators parameterized to represent a condensed-phase environment. Numerically exact quantum-mechanical flux correlation functions and thermal rate constants are obtained for a broad range of temperatures and system-bath coupling strengths, thus demonstrating the efficacy of the ML-MCTDH approach. Particular attention is focused on the regime where low temperatures are combined with weak system-bath coupling. Under such conditions it is found that long propagation times are often required and that quantum coherence effects may prevent a rigorous determination of the rate constant.
最近提出的用于评估反应性量子动力学的多层多组态含时 Hartree(ML-MCTDH)方法被应用于两个模型凝聚相质子转移反应。这些模型由一个一维双阱“系统”组成,该系统与一组参数化的简谐振子“浴”双线性耦合,这些简谐振子代表凝聚相环境。在广泛的温度范围和系统 - 浴耦合强度下,获得了数值精确的量子力学通量相关函数和热速率常数,从而证明了 ML-MCTDH 方法的有效性。特别关注的是低温与弱系统 - 浴耦合相结合的区域。在这种条件下发现,通常需要很长的传播时间,并且量子相干效应可能会妨碍对速率常数的严格确定。