Quantum computation of the properties of helium using two-body and three-body intermolecular potentials: a molecular dynamics study

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作者
Elaheh K. Goharshadi
Mohsen Abbaspour
Hamideh Kashani
Mahmood Baherololoom
机构
[1] Ferdowsi University,Department of Chemistry
[2] Islamic Azad University,Department of Chemistry
来源
关键词
Potential energy function; Molecular dynamics simulation; Quantum corrections; Feynman–Hibbs approach; Three-body interactions; Self-diffusion coefficient;
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摘要
We have performed the molecular dynamics simulation to obtain energy, pressure, and self-diffusion coefficient of helium at different temperatures and densities using Lennard–Jones (LJ), Hartree–Fock dispersion-Individual damping (HFD-ID) potential, and the HFD-like potential which has been obtained with an inversion of viscosity data at zero pressure supplemented by quantum corrections following the Feynman–Hibbs approach. The contribution of three-body interactions using an accurate simple relationship reported by Wang and Sadus between two-body and three-body interactions has been also involved for non-effective potentials (HFD-ID and HFD-like) in simulation. Our results show a good agreement with corresponding experimental data. A comparison of our simulated results with other molecular simulations using different potentials is also included.
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页码:355 / 368
页数:13
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