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首页> 外文期刊>The Journal of Chemical Physics >Assessing the utility of phase-space-localized basis functions: Exploiting direct product structure and a new basis function selection procedure
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Assessing the utility of phase-space-localized basis functions: Exploiting direct product structure and a new basis function selection procedure

机译:评估相空间局部化基础函数的效用:开发直接产品结构和新的基础函数选择程序

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In this paper we show that it is possible to use an iterative eigensolver in conjunction with Halverson and Poirier's symmetrized Gaussian (SG) basis [T. Halverson and B. Poirier, J. Chem. Phys. 137, 224101 (2012)] to compute accurate vibrational energy levels of molecules with as many as five atoms. This is done, without storing and manipulating large matrices, by solving a regular eigenvalue problem that makes it possible to exploit direct-product structure. These ideas are combined with a new procedure for selecting which basis functions to use. The SG basis we work with is orders of magnitude smaller than the basis made by using a classical energy criterion. We find significant convergence errors in previous calculations with SG bases. For sum-of-product Hamiltonians, SG bases large enough to compute accurate levels are orders of magnitude larger than even simple pruned bases composed of products of harmonic oscillator functions. Published by AIP Publishing.
机译:在本文中,我们表明可以结合Halverson和Poirier的对称高斯(SG)基础使用迭代特征求解器。 Halverson和B. Poirier,化学杂志。物理137,224101(2012)]计算具有多达五个原子的分子的精确振动能级。通过解决常规特征值问题(无需开发和处理大型矩阵),可以利用直接乘积结构完成此任务。这些想法与新的过程相结合,用于选择要使用的基本函数。我们使用的SG基础比使用经典能量标准所建立的基础小几个数量级。我们在使用SG基的先前计算中发现了明显的收敛误差。对于乘积和的哈密顿量,足够大的SG基数可以计算出精确的水平,甚至比由谐波振荡器函数的乘积组成的简单修剪基数大几个数量级。由AIP Publishing发布。

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