2000The Journal of Chemical PhysicsRequires access

Perturbation theory of three-body exchange nonadditivity and application to helium trimer

Victor F. Lotrich, Krzysztof Szalewicz

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Abstract

The many-body symmetry-adapted perturbation theory (SAPT) of intermolecular interactions has been applied to the nonadditivity of the trimer first-order exchange energy. The orbital expressions including intramonomer correlation effects up to the second order have been derived. These expressions, together with other many-body SAPT terms developed earlier, have been used to compute the nonadditivity of the helium trimer. The computed points have been fitted by a global potential function.

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What this paper is about

The many-body symmetry-adapted perturbation theory (SAPT) of intermolecular interactions has been applied to the nonadditivity of the trimer first-order exchange energy. The orbital expressions including intramonomer correlation effects up to the second order have been derived. These expressions, together with other many-body SAPT terms developed earlier, have been used to compute the nonadditivity of the helium trimer. The computed points have been fitted by a global potential function.

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Available abstract

The many-body symmetry-adapted perturbation theory (SAPT) of intermolecular interactions has been applied to the nonadditivity of the trimer first-order exchange energy. The orbital expressions including intramonomer correlation effects up to the second order have been derived. These expressions, together with other many-body SAPT terms developed earlier, have been used to compute the nonadditivity of the helium trimer. The computed points have been fitted by a global potential function.

Key concepts: Trimer, Perturbation theory (quantum mechanics), Helium, Intermolecular force, Perturbation (astronomy), Physics, Interaction energy, Computational chemistry

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