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Role of initial orbital alignment in H++K(4p) collisions at low energies

机译:初始轨道对准在低能H ++ K(4p)碰撞中的作用

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We report calculations of state-selective electron capture by H+ from K(4p) in Sigma and Pi alignments, in the 0.01-1 keV/amu energy range. We use, in the impact parameter formalism, the semiclassical close-coupling method with molecular-state expansion embodying electronic translation factors. Molecular states and adiabatic states are obtained from standard one-electron LCAO calculations using Slater-type orbitals and pseudopotentials for the e(-)-K core interactions. In addition to the state-selective capture cross sections, we also have calculated the K(5s), K(3d), and K(5p) excitation cross sections. We report the anisotropy parameters A(n) for n = 2 and n = 3 states of the formed H atom as well as A(ex) for populating the excited states of the K atom for the first time. (C) 2001 John Wiley & Sons, Inc. [References: 19]
机译:我们报告在Sigma和Pi排列中在0.01-1 keV / amu能量范围内通过H +从K(4p)的K +(4p)捕获状态选择性电子的计算。在影响参数形式论中,我们使用具有电子翻译因子的分子状态扩展的半经典紧密耦合方法。分子态和绝热态是从标准的单电子LCAO计算获得的,该计算使用了Slater型轨道和伪势,用于e(-)-K核相互作用。除了状态选择捕获截面外,我们还计算了K(5s),K(3d)和K(5p)激发截面。我们报告了形成的H原子的n = 2和n = 3态的各向异性参数A(n),以及首次填充K原子的激发态的A(ex)。 (C)2001 John Wiley&Sons,Inc. [参考:19]

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