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Dynamic polarizabilities of Zn and Cd and dispersion coefficients involving group 12 atoms

机译:Zn和Cd的动态极化率和涉及第12族原子的色散系数

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摘要

The refractive index data for Zn and Cd measured by Goebel and Hohm are analyzed with a three-term Maxwell-Sellmeier expression which incorporates the experimental oscillator strengths of the first two dipole transitions. These expressions are extended to imaginary frequencies for the determination of the upper and lower bounds of the dynamic polarizabilities α(iω), from which the van der Waals coefficients of two-body interactions and the non-additive three-body interactions are generated. The determined C 6 values for Zn _2 (359±8 a.u.) and Cd _2 (686±10 a.u.) are much larger than those originally estimated by Goebel and Hohm. This is because their one-term approximation of α(ω), which fits the measurements very well in the normal frequency range, greatly underestimates α(iω) when the frequency is extended into the imaginary domain. On the other hand, the present results of heteronuclear interactions verify once again that Tangs one-term approximation of α(iω) leads to accurate combining rules. The two- and three-body interaction coefficients between group 12 atoms (Zn, Cd, Hg) and the alkali, alkaline-earth, rare-gas atoms, and some molecules are estimated with these combining rules.
机译:使用三项Maxwell-Sellmeier表达式分析了Goebel和Hohm测得的Zn和Cd的折射率数据,该表达式结合了前两个偶极跃迁的实验振荡器强度。将这些表达式扩展到虚数频率,以确定动态极化率α(iω)的上限和下限,从中生成两体相互作用和非加法三体相互作用的范德华系数。所确定的Zn _2(359±8 a.u.)和Cd _2(686±10 a.u.)的C 6值比Goebel和Hohm最初估计的值大得多。这是因为当频率扩展到虚域时,它们的α(ω)的一阶近似值非常适合正常频率范围内的测量,因此大大低估了α(iω)。另一方面,目前异核相互作用的结果再次证明了α(iω)的Tangs项逼近可导致精确的组合规则。使用这些组合规则,可以估算第12组原子(Zn,Cd,Hg)与碱,碱土,稀有气体原子和某些分子之间的两体和三体相互作用系数。

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