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Efficient and Flexible Computation of Many-ElectronWave Function Overlaps

机译:多电子的高效灵活计算波函数重叠

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摘要

A new algorithm for the computation of the overlap between many-electron wave functions is described. This algorithm allows for the extensive use of recurring intermediates and thus provides high computational efficiency. Because of the general formalism employed, overlaps can be computed for varying wave function types, molecular orbitals, basis sets, and molecular geometries. This paves the way for efficiently computing nonadiabatic interaction terms for dynamics simulations. In addition, other application areas can be envisaged, such as the comparison of wave functions constructed at different levels of theory. Aside from explaining the algorithm and evaluating the performance, a detailed analysis of the numerical stability of wave function overlaps is carried out, and strategies for overcoming potential severe pitfalls due to displaced atoms and truncated wave functions are presented.
机译:描述了一种计算多电子波函数之间重叠的新算法。该算法允许大量使用重复的中间体,因此提供了很高的计算效率。由于采用了一般形式,因此可以为各种波动函数类型,分子轨道,基集和分子几何形状计算重叠。这为有效计算动力学模拟的非绝热相互作用项铺平了道路。另外,可以设想其他应用领域,例如在不同理论水平构建的波函数的比较。除了解释算法和评估性能之外,还对波函数重叠的数值稳定性进行了详细的分析,并提出了克服由于位移原子和截断波函数而导致的潜在严重陷阱的策略。

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