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Dipole-octupole polarisability of uranium hexafluoride and theoretical prediction of anisotropic light-scattering spectrum using new intermolecular potential M. S. A. El-Kader, Y. N. Kalugina

By: El-Kader, M. S. AContributor(s): Kalugina, Yulia NMaterial type: ArticleArticleSubject(s): гексафторид урана | межмолекулярные потенциалы | поляризуемость | рассеяние светаGenre/Form: статьи в журналах Online resources: Click here to access online In: Molecular physics Vol. 114, № 1. P. 44-52Abstract: The higher order dipole–octupole polarisability of uranium hexafluoride has been determined from anisotropic collision-induced light scattering (CILS) of gaseous UF6. A new isotropic intermolecular potential was proposed. The CILS spectra were analysed using present and literature intermolecular potentials. Our estimates for the dipole–octupole polarisability is |E| = 507.3 a.u., which is in a good agreement with our new ab initio value and literature theoretical estimates. Our best theoretical values of (hyper)polarisabilities calculated at the CCSD(T) level of theory are as follows: α = 54.63 a.u., E = −555.3 a.u., C = 595.1 a.u., and γ = 2103 a.u.
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The higher order dipole–octupole polarisability of uranium hexafluoride has been determined from anisotropic collision-induced light scattering (CILS) of gaseous UF6. A new isotropic intermolecular potential was proposed. The CILS spectra were analysed using present and literature intermolecular potentials. Our estimates for the dipole–octupole polarisability is |E| = 507.3 a.u., which is in a good agreement with our new ab initio value and literature theoretical estimates. Our best theoretical values of (hyper)polarisabilities calculated at the CCSD(T) level of theory are as follows: α = 54.63 a.u., E = −555.3 a.u., C = 595.1 a.u., and γ = 2103 a.u.

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