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首页> 外文期刊>The Journal of Chemical Physics >Orbit-orbit relativistic correction calculated with all-electron molecular explicitly correlated Gaussians
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Orbit-orbit relativistic correction calculated with all-electron molecular explicitly correlated Gaussians

机译:用全电子分子明确相关的高斯计算计算的轨道轨道轨道相对论校正

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An algorithm for calculating the first-order electronic orbit-orbit magnetic interaction correction for an electronic wave function expanded in terms of all-electron explicitly correlated molecular Gaussian (ECG) functions with shifted centers is derived and implemented. The algorithm is tested in calculations concerning the H-2 molecule. It is also applied in calculations for LiH and H-3(+) molecular systems. The implementation completes our work on the leading relativistic correction for ECGs and paves the way for very accurate ECG calculations of ground and excited potential energy surfaces (PESs) of small molecules with two and more nuclei and two and more electrons, such as HeH, H-3(+), HeH2+, and LiH2+. The PESs will be used to determine rovibrational spectra of the systems. Published by AIP Publishing.
机译:衍生和实现用于计算关于电子波函数的一阶电子轨道轨道磁交互校正的一阶电子波函数的算法,并实现了具有换档中心的全电子显式相关的分子高斯(ECG)功能。 在关于H-2分子的计算中测试该算法。 它也适用于LIH和H-3(+)分子系统的计算。 实施完成了我们对ECG的领先相对论纠正的工作,为非常准确的ECG计算的地面和兴奋的潜在能量表面(PES)铺平了有两种,更多的核,如Heh,H -3(+),Heh2 +和LiH2 +。 PES将用于确定系统的rovibriation光谱。 通过AIP发布发布。

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