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6D vibrational quantum dynamics: Generalized coordinate discrete variable representation and (a)diabatic contraction

机译:6D振动量子动力学:广义坐标离散变量表示和(a)绝热收缩

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A new discrete variable representation (DVR) in generalized vibrational coordinates is proposed together with a new mixed diabatic/adiabatic contraction technique for the treatment of multidimensional vibrational problems up to high vibrational excitations.Formally based on the equidistant Chebyshev DVR in the grid index the new formulation is particularly suitable for multidimensional minimum energy paths.The new Z-matrix DVR proposed in this paper encompasses usual valence coordinates as well as nonlinear maps of coordinates on optimal nonequidistant grids.The pontwise mumerical calculation of all kinetic energy terms avoids the algebraic derivation of specialized analy tical forms of the kinetic energy adding to the flexibility of the method.With efficient truncation schemes the generalized DVR allows for a compact representation of the time-dependent wave-packet dynket dynamics in up to six dimensions.Vibrationally adiabatic approaches to the detailed modelling of multidimensional quantum-dynamics usually are hampered by the typically large number of (avoided) crossings in dense spectra.This problem is particularly severe for discrete variable representations.A solution is provided by the new technique of diabatic rotations leading to a systematic construction of locally diabatic channels.This allows the treatment of very dense spectra where conventional truncation techniques fail.Applying the new approach to the vibrational problem of tetratomic molecules demonstrates its floxibility and efficiency.The examples of formaldehyde,ammonia,and hydrogen peroxide cover the whole range from semirigid (CH_2O) to large amplitude inversion (NH_3) and torsional tunnelling dynamics (H_2O_2).In solving the full six-dimensional vibrational eigenvalue problems for CH_2O and NH_3 the Z-matrix DVR shows at least comparable if not superior numerical efficiency compared with specialized techniques.In the case of H_2O_2 the technique of diabatic rotations and adiabatic contraction for the first time allows the treatment of the tunneling dynamics significantly above the dissociation thrshold up to the fifth OH stretch overtone.The calculated decrease of the tunneling rate by about one order of nagnitude agrees well with experimental observations.
机译:提出了一种新的广义振动坐标系下的离散变量表示(DVR)以及一种新的非绝热/绝热混合收缩技术,用于处理多维振动问题,直至高振动激励。正式基于等距切比雪夫DVR的网格索引该公式特别适用于多维最小能量路径。本文提出的新Z矩阵DVR包含常规的化合价坐标以及最佳非等距网格上的坐标非线性图。所有动能项的按面数值计算避免了的代数推导。专门的分析形式的动能增加了方法的灵活性。借助有效的截断方案,通用的DVR可以在多达六个维度上紧凑地表示随时间变化的波数据包动力学,详细的振动绝热方法多维建模量子动力学通常会受到密集光谱中通常大量(避免的)交叉的阻碍,这个问题对于离散变量表示尤为严重。非绝热旋转的新技术提供了解决方案,从而导致了系统构建局部非绝热通道这可以处理传统截断技术无法实现的非常稠密的光谱。将新方法应用于四原子分子的振动问题证明了其易浮性和高效性。甲醛,氨和过氧化氢的实例涵盖了从半刚性(CH_2O )到大振幅反演(NH_3)和扭转隧穿动力学(H_2O_2)。在解决CH_2O和NH_3的完整六维振动特征值问题时,Z矩阵DVR的数值效率与专门技术相比至少具有可比性。 H_2O_2情况绝热旋转和绝热收缩技术首次允许在高于解离门限的范围内处理隧穿动力学,直至达到第五个OH拉伸泛音。计算出的隧穿速率下降约一个数量级的幅度与实验观察结果非常吻合。

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