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Approaches to the approximate treatment of complex molecular systems by the multiconfiguration time-dependent Hartree method

机译:多构型时变Hartree方法近似处理复杂分子系统

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摘要

A consistent treatment of environmental effects is proposed in the framework of the multiconfiguration time-dependent Hartree (MCTDH) method. The method is extended in view of treating complex molecular systems which require an exact quantum dynamics for a certain number of "primary" modes while an approximate dynamics is adequate for a class of "secondary" modes. The latter may correspond to the weakly coupled modes in a polyatomic molecule, or the first solvent shell in a solute-solvent complex. For these modes, a description in terms of parameterized functions is introduced. The MCTDH working equations are generalized to allow for the nonorthogonality of these functions, which may take, e.g., a multidimensional Gaussian form. The formalism is developed on the level of both the wave function description and the density matrix description. Dissipative effects are accounted for in terms of a stochastic Hamiltonian approach versus master equation approach in the respective descriptions.
机译:在多配置时变Hartree(MCTDH)方法的框架内,提出了对环境影响的一致处理。鉴于处理复杂的分子系统而扩展了该方法,该复杂的分子系统对于一定数量的“主要”模式需要精确的量子动力学,而对于“第二”模式则需要足够的近似动力学。后者可以对应于多原子分子中的弱耦合模式,或对应于溶质-溶剂络合物中的第一溶剂壳。对于这些模式,介绍了有关参数化功能的描述。概括了MCTDH工作方程,以允许这些函数的非正交性,其可以采用例如多维高斯形式。形式主义是在波动函数描述和密度矩阵描述的水平上发展的。在相应的描述中,根据随机哈密顿方法与主方程方法来考虑耗散效应。

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