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Electronic, spectra, and spin orbit interaction for FrAr van der Waals system

机译:FrAr van der Waals系统的电子,光谱和自旋轨道相互作用

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The potential energy curves and spectroscopic constants of the ground and many excited states of the FrAr van der Waals system have been determined using a one-electron pseudopotential approach. The Fr~+ core and the electron-Ar interactions are replaced by effective potentials. The Fr~+Ar core-core interaction is incorporated using the accurate CCSD(T) potential of Hickling et al. (Phys. Chem. Chem. Phys. 2004, 6, 4233). This approach reduces the number of active electrons of the FrAr van der Waals system to only one valence electron, which permits the use of very large basis sets for the Fr and Ar atoms. Using this technique, the potential energy curves of the ground and many excited states are calculated at the self consistent field (SCF) level. In addition, the spin-orbit interaction is also considered using the semiempirical scheme for the states dissociating into Fr (7p) and Fr (8p). The FrAr system is not studied previously and its potential interactions, spectroscopic constants and dipole functions are presented here for the first time. Furthermore, we have predicted the X~2Σ~+-A ~2Π_(1/2), X~2Σ~+- AΠ_(3/2), X~2Σ~+-B ~2Σ_(1/2) +, X~2Σ +-3~2Π_(1/2), X~2Σ +-3~2Π_(3/2), and X ~2Σ+-5~2Σ_(1/ 2) + absorption spectra.
机译:FrAr van der Waals系统的地势和许多激发态的势能曲线和光谱常数已使用单电子pseudo势方法确定。 Fr〜+核和电子-Ar相互作用被有效电势代替。利用Hickling等人的准确CCSD(T)势能将Fr〜+ Ar核-核相互作用纳入其中。 (Phys.Chem.Chem.Phys.2004,6,4233)。这种方法将FrAr van der Waals系统的活性电子数减少到一个价电子,这允许对Fr和Ar原子使用非常大的基集。使用这种技术,可以在自洽场(SCF)级别上计算基态和许多激发态的势能曲线。另外,对于分离为Fr(7p)和Fr(8p)的状态,也使用半经验方案考虑了自旋轨道相互作用。 FrAr系统以前没有研究过,它的潜在相互作用,光谱常数和偶极函数在这里是首次提出。此外,我们还预测了X〜2Σ〜+ -A〜2Π_(1/2),X〜2Σ〜+-AΠ_(3/2),X〜2Σ〜+ -B〜2Σ_(1/2)+, X〜2Σ+ -3〜2Π_(1/2),X〜2Σ+ -3〜2Π_(3/2)和X〜2Σ+ -5〜2Σ_(1/2)+吸收光谱。

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