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Six-dimensional variational calculation of the bending energy levels of HF trimer and DF trimer

机译:HF三聚体和DF三聚体的弯曲能级的六维变分计算

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The bending energy levels of HF and DF trimer were calculated variationally using a six-dimensional kinetic-energy operator derived by constraining the stretch degrees of freedom to their equilibrium values. A basis of direct produc5s of spherical harmonics is used to represent the wave function. The symmetry adapted Lanczos method is used to calculate levels of all symmetries from one sequence of matrix-vector products. Two efficient ways of implementing the symmetry-adapted Lanczos method are presented. To determine the concerted hydrogen bond breaking tunneling splitting in HF and DF trimer one needs to use the D_(3h) point group. By dong D_(3h) calculations, we find that the splitting is negligible for the low-lying levels. If the tunneling is unfeasible, the appropriate group is C_(3h). Our calculation using the most accurate SO-3+HF3BG potential developed by Quack, Stohner, and Suhm indicates that two gas-phase overtone bending bands of HF trimer should be reassigned, and that the noble gas matrix spectra of the bending fundamental bands are significantly shifted from their gas-phase counterparts.
机译:HF和DF三聚体的弯曲能级是通过使用六维动能算子来可变计算的,该算子是通过将拉伸自由度约束到其平衡值而得出的。球形谐波直接产生的基础用来表示波函数。对称适应的Lanczos方法用于从矩阵向量乘积的一个序列中计算所有对称性的水平。提出了两种实现对称自适应Lanczos方法的有效方法。为了确定HF和DF三聚体中一致的氢键断裂隧穿分裂,需要使用D_(3h)点组。通过dong D_(3h)计算,我们发现低层的分裂可以忽略不计。如果隧道不可行,则适当的组为C_(3h)。我们使用Quack,Stohner和Suhm开发的最精确的SO-3 + HF3BG电势进行的计算表明,应该重新分配HF三聚体的两个气相泛音弯曲带,并且弯曲基带的稀有气体基质光谱显着从气相对应物转移。

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