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Layered discrete variable representations and their application within the multiconfigurational time-dependent Hartree approach

机译:分层离散变量表示及其在多配置时间相关Hartree方法中的应用

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The multiconfigurational time-dependent Hartree (MCTDH) approach facilitates multidimensional quantum dynamics calculations by employing a layered representation: in the upper layer of the representation the multidimensional wave function is expanded in a basis of time-dependent single-particle functions, in the lower layer then these single-particle functions are represented in a larger time-independent basis. This two layer approach can be generalized to a multilayer MCTDH representation to further increase the numerical efficiency. In recent work [U. Manthe, J. Chem. Phys. 128, 164116 (2008)], a quadrature scheme has been introduced which facilitates multilayer MCTDH calculations for Hamiltonians with general potential energy functions. Based on time-dependent discrete variable representation (DVR) grids corresponding to the single-particle function bases the scheme employs the correlation DVR (CDVR) approach. The present work shows that serious problems arise when this original multilayer CDVR approach is applied for accurate calculations of vibrational states. A solution to these problems is presented which uses a revised scheme to define the time-dependent DVR grids entering into the CDVR scheme. Applications studying the vibrational states of CH3 demonstrate that the resulting revised multilayer MCTDH/CDVR approach yields smoothly convergent and accurate results.
机译:多配置时间相关哈特里(MCTDH)方法通过采用分层表示来促进多维量子动力学计算:在表示的上层中,多维波函数在与时间相关的单粒子函数的基础上展开,在下层中那么这些单粒子函数将以更大的时间独立性表示。此两层方法可以推广到多层MCTDH表示中,以进一步提高数值效率。在最近的工作中[U.曼特,化学杂志。物理128,164116(2008)]中介绍了一种正交方案,该方案简化了具有一般势能函数的哈密顿量的多层MCTDH计算。基于与单粒子函数基础相对应的时间相关的离散变量表示(DVR)网格,该方案采用了相关DVR(CDVR)方法。当前的工作表明,当这种原始的多层CDVR方法应用于振动状态的精确计算时,会出现严重的问题。提出了针对这些问题的解决方案,该解决方案使用修订的方案来定义进入CDVR方案的随时间变化的DVR网格。研究CH3振动状态的应用表明,改进后的多层MCTDH / CDVR方法可以产生平稳收敛的精确结果。

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