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An ab initio calculation of the anisotropic hyperfine coupling constants in the low-lying vibronic levels of the X (2)Pi electronic state of CCCH

机译:CCCH X(2)Pi电子态低位振动能级中各向异性超精细耦合常数的从头计算

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摘要

The results of ab initio calculations of the vibronically averaged components of the anisotropic magnetic hyperfine tensor in the low-lying vibronic species of the X (2)Pi electronic state of CCCH and CCCD are reported. The electronically averaged hyperfine coupling constants for hydrogen and C-13 in C-12 C-12 (CH)-C-12, C-13 C-12 (CH)-C-12, C-12 C-13 (CH)-C-12, C-12 C-12 (CH)-C-13, and C-12 C-12 (CD)-C-12 are obtained as functions of two bending vibrational modes by the density functional theory method. The vibronic wave functions are calculated with help of a variational approach which takes into account the Renner-Teller effect and spin-orbit coupling. The results of the present study help to reliably interpret the experimental data previously published and predict the yet unobserved hyperfine structure in excited vibronic states of CCCH and CCCD. (C) 2004 American Institute of Physics.
机译:报道了CCCH和CCCD的X(2)Pi电子态的低层振动子中各向异性磁超精细张量的平均声分量的从头算的结果。 C-12 C-12(CH)-C-12,C-13 C-12(CH)-C-12,C-12 C-13(CH)中氢和C-13的电子平均超细偶合常数通过密度泛函理论方法获得了两种弯曲振动模式的函数-C-12,C-12 C-12(CH)-C-13和C-12 C-12(CD)-C-12。借助变分方法来计算电磁波函数,该方法考虑了Renner-Teller效应和自旋轨道耦合。本研究的结果有助于可靠地解释先前发表的实验数据,并预测CCCH和CCCD激发振动状态下尚未观察到的超精细结构。 (C)2004年美国物理研究所。

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