Quantum states of confined hydrogen plasma species: Monte Carlo calculations
arXiv:1904.01309 · doi:10.1088/0963-0252/24/6/065019
Abstract
The diffusion Monte Carlo method with symmetry-based state selection is used to calculate the quantum energy states of H confined into potential barriers of atomic dimensions (a model for these ions in solids). Special solutions are employed permitting one to obtain satisfactory results with rather simple native code. As a test case, and states of H ions under spherical confinement are considered. The results are interpreted using the correlation of H states to atomic orbitals of H atoms lying on the confining surface and perturbation calculations. The method is straightforwardly applied to cavities of any shape and different hydrogen plasma species (at least one-electron ones, including H) for future studies with real crystal symmetries.
7 pages, 6 figures, 42 bibliographic references