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Solving the Schrödinger equation of atoms and molecules with the free-complement chemical-formula theory: First-row atoms and small molecules. | LitMetric

AI Article Synopsis

  • The free-complement chemical-formula theory (FC-CFT) was applied to the Schrödinger equation, achieving high accuracy in calculating the ground state of first-row atoms and small molecules.
  • A local Schrödinger equation method was used to ensure stable and precise solutions, alongside a combined sampling technique that included local and Metropolis sampling for improved quantum mechanical calculations.
  • The methodology demonstrates consistent accuracy and stability, indicating its potential as a valuable tool for solving the Schrödinger equation for various atoms and molecules, although further testing on the stationarity principle is needed.

Article Abstract

The free-complement chemical-formula theory (FC-CFT) for solving the Schrödinger equation (SE) was applied to the first-row atoms and several small molecules, limiting only to the ground state of a spin symmetry. Highly accurate results, satisfying chemical accuracy (kcal/mol accuracy for the absolute total energy), were obtained for all the cases. The local Schrödinger equation (LSE) method was applied for obtaining the solutions accurately and stably. For adapting the sampling method to quantum mechanical calculations, we developed a combined method of local sampling and Metropolis sampling. We also reported the method that leads the calculations to the accurate energies and wave functions as definite converged results with minimum ambiguities. We have also examined the possibility of the stationarity principle in the sampling method: it certainly works, though more extensive applications are necessary. From the high accuracy and the constant stability of the results, the present methodology seems to provide a useful tool for solving the SE of atoms and molecules.

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Source
http://dx.doi.org/10.1063/1.5040377DOI Listing

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