English

Ground-state properties and superfluidity of two- and quasi two-dimensional solid 4He

Other Condensed Matter 2015-05-28 v1

Abstract

In a recent study we have reported a new type of trial wave function symmetric under the exchange of particles and which is able to describe a supersolid phase. In this work, we use the diffusion Monte Carlo method and this model wave function to study the properties of solid 4He in two- and quasi two-dimensional geometries. In the purely two-dimensional case, we obtain results for the total ground-state energy and freezing and melting densities which are in good agreement with previous exact Monte Carlo calculations performed with a slightly different interatomic potential model. We calculate the value of the zero-temperature superfluid fraction \rho_{s} / \rho of 2D solid 4He and find that it is negligible in all the considered cases, similarly to what is obtained in the perfect (free of defects) three-dimensional crystal using the same computational approach. Interestingly, by allowing the atoms to move locally in the perpendicular direction to the plane where they are confined to zero-point oscillations (quasi two-dimensional crystal) we observe the emergence of a finite superfluid density that coexists with the periodicity of the system.

Keywords

Cite

@article{arxiv.1105.3305,
  title  = {Ground-state properties and superfluidity of two- and quasi two-dimensional solid 4He},
  author = {C. Cazorla and G. E. Astrakharchik and J. Casulleras and J. Boronat},
  journal= {arXiv preprint arXiv:1105.3305},
  year   = {2015}
}

Comments

16 pages, 8 figures

R2 v1 2026-06-21T18:08:23.199Z