Frozen-core full-Cl calculations of frequency-dependent dipole polarizabilities (FDPs) of ground state BeH2 at the experimental distance of R = 2.506a(0) have been performed using an extended set of 208 contracted GTO functions [9s9p5d3f] on Be and [9s8p6d] on H involving about 58 x 106 symmetry-adapted Slater determinants. The Casimir-Polder integral was then evaluated analytically using eight optimized imaginary frequencies chosen according to a recently developed interpolation technique which allows for the evaluation of the three dipole dispersion constants for the BeH2-BeH2 homodimer, from which isotropic C-6 and anisotropy gamma(6) coefficients are derived for the first time. (c) 2005 Elsevier B.V. All rights reserved.

Frozen-core full-CI calculation of imaginary frequency-dependent dipole polarizabilities of ground state BeH2 and the C6 dispersion coefficients of its homodimer

FIGARI, GIUSEPPE;RUI, MARINA;COSTA, CAMILLA;MAGNASCO, VALERIO
2005-01-01

Abstract

Frozen-core full-Cl calculations of frequency-dependent dipole polarizabilities (FDPs) of ground state BeH2 at the experimental distance of R = 2.506a(0) have been performed using an extended set of 208 contracted GTO functions [9s9p5d3f] on Be and [9s8p6d] on H involving about 58 x 106 symmetry-adapted Slater determinants. The Casimir-Polder integral was then evaluated analytically using eight optimized imaginary frequencies chosen according to a recently developed interpolation technique which allows for the evaluation of the three dipole dispersion constants for the BeH2-BeH2 homodimer, from which isotropic C-6 and anisotropy gamma(6) coefficients are derived for the first time. (c) 2005 Elsevier B.V. All rights reserved.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11567/245479
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