paper

Dipole oscillator strength distributions, sum rules, mean excitation energies, and isotropic van der Waals coefficients for benzene, pyridazine, pyrimidine, pyrazine, s-triazine, toluene, hexafluorobenzene, and nitrobenzene

arXiv:2010.01162 · doi:10.1063/5.0025662

Abstract

Experimental, theoretical, and additive-model photoabsorption cross-sections combined with constraints provided by the Kuhn-Reiche-Thomas sum rule and the high-energy behavior of the dipole-oscillator-strength density are used to construct dipole oscillator strength distributions for benzene, pyridazine (1,2-diazine), pyrimidine (1,3-diazine), pyrazine (1,4-diazine), -triazine (1,3,5-triazine), toluene (methylbenzene), hexafluorobenzene, and nitrobenzene. The distributions are used to predict dipole sum rules for , mean excitation energies for , and isotropic van der Waals coefficients. A popular combination rule for estimating coefficients for unlike interactions from the coefficients of the like interactions is found to be accurate to better than 1\% for 606 of 628 cases (96.4\%) in the test set.

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