Thin He-4 films on alkali substrates: where do He-3 atoms bind?
arXiv:2209.03412 · doi:10.1007/s10909-022-02914-6
Abstract
The possible occurrence of bound states of He-3 atoms in the vicinity of a weakly attractive substrate coated with a thin superfluid He-4film is investigated by first principle computer simulations. No evidence is seen of such bound states, even in the case of the weakest substrate, i.e., Cs; a single He-3 atom always binds to the free He-4 surface, regardless of the thickness of the He-4 film. A comparison of He-4 density profiles computed in this work with those yielded by the Density Functional approach that led to the prediction of He-3 bound states near the substrate, shows that the latter may not have afforded a sufficiently accurate structural description of the adsorbed He-4 film.
Ten pages, three color figures
References in corpus (6)
- Worm Algorithm and Diagrammatic Monte Carlo: A New Approach to Continuous-Space Path Integral Monte Carlo Simulations
- Superfluidity and Quantum Melting of para-Hydrogen clusters
- Structure, superfluidity, and quantum melting of hydrogen clusters
- Classical and quantum filaments in the ground state of trapped dipolar Bose gases
- Population size bias in Diffusion Monte Carlo
- Absence of superfluidity in 2D dipolar Bose striped crystals