Simulations of one- and two-electron systems by Bead-Fourier path integral molecular dynamics

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Abstract

The Bead-Fourier path integral molecular dynamics technique introduced earlier [S. D. Ivanov, A. P. Lyubartsev, and A. Laaksonen, Phys. Rev. E 67 066710 (2003)] is applied for simulation of electrons in the simplest molecules: molecular hydrogen, helium atom, and their ions. Special attention is paid to the correct description of electrons in the core region of a nucleus. In an attempt to smooth the Coulomb potential at small distances, a recipe is suggested. The simulation results are in excellent agreement with the analytical solution for the "harmonic helium atom", as well as with the vibrational potential of the H2 molecule and He ionization energies. It is demonstrated, that the Bead-Fourier path integral molecular dynamics technique is able to provide the accuracy required for the description of electron structure and chemical bonds in cases when electron exchange effects need not be taken into account. © 2005 American Institute of Physics.

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Ivanov, S. D., & Lyubartsev, A. P. (2005). Simulations of one- and two-electron systems by Bead-Fourier path integral molecular dynamics. Journal of Chemical Physics, 123(3). https://doi.org/10.1063/1.1961312

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