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首页> 外文期刊>The Journal of Chemical Physics >Performance evaluation of the symmetrical quasi-classical dynamics method based on Meyer-Miller mapping Hamiltonian in the treatment of site-exciton models
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Performance evaluation of the symmetrical quasi-classical dynamics method based on Meyer-Miller mapping Hamiltonian in the treatment of site-exciton models

机译:基于Meyer-Miller Mapping Hamiltonian的对称准古典动力学方法的性能评估哈密顿治疗现场激子模型

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摘要

The symmetrical quasi-classical dynamics method based on the Meyer-Miller mapping Hamiltonian (MM-SQC) shows the great potential in the treatment of the nonadiabatic dynamics of complex systems. We performed the comprehensive benchmark calculations to evaluate the performance of the MM-SQC method in various site-exciton models with respect to the accurate results of quantum dynamics method multilayer multiconfigurational time-dependent Hartree (ML-MCTDH). The parameters of the site-exciton models are chosen to represent a few of prototypes used in the description of photoinduced excitonic dynamics processes in photoharvesting systems and organic solar cells, which include the rather broad situations with the fast or slow bath and different system-bath couplings. When the characteristic frequency of the bath is low, the MM-SQC method performs extremely well, and it gives almost the identical results to those of ML-MCTDH. When the fast bath is considered, the deviations exist between the MM-SQC and ML-MCTDH results if the high-frequency bath modes are improperly treated by the classical manner. When the so-called adiabatic renormalization was employed to construct the reduced Hamiltonian by freezing high-frequency modes, the MM-SQC dynamics can give the results comparable to the ML-MCTDH ones. Thus, the MM-SQC method itself provides reasonable results in all test site-exciton models, while the proper treatments of the bath modes must be employed. The possible dependence of the MM-SQC dynamics on the different initial sampling methods for the nuclear degrees of freedom is also discussed. Published by AIP Publishing.
机译:基于Meyer-Miller映射Hamiltonian(MM-SQC)的对称准古典动力学方法显示了治疗复杂系统的非等压动态的巨大潜力。我们执行了全面的基准计算,以评估关于Quantum Dynamics方法多层多功能时间依赖性Hartree(ML-MCTDH)的准确结果的各个站点激励模型中MM-SQC方法的性能。选择站点 - 激子模型的参数来表示光导电系统和有机太阳能电池中的光导电动力学过程的描述中使用的一些原型,包括快速或慢浴和不同的系统浴的相当宽的情况联轴器。当浴的特征频率低时,MM-SQC方法的执行非常良好,并且它几乎给出了ML-MCTDH的结果。当考虑快速浴时,如果通过经典方式不当地处理MM-SQC和ML-MCTDH结果,则存在偏差。当采用所谓的绝热重整化来构造通过冻结高频模式来构建减少的哈密顿时,MM-SQC动力学可以给出与ML-MCTDH的动态相当的结果。因此,MM-SQC方法本身在所有测试部位 - 激子模型中提供合理的结果,而必须采用适当的浴浴模式的处理。还讨论了MM-SQC动态对核自由度的不同初始采样方法的可能依赖性。通过AIP发布发布。

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