English

Commensurate-incommensurate solid transition in the $^4$He monolayer on $\gamma$-graphyne

Materials Science 2014-09-05 v1

Abstract

Path-integral Monte Carlo calculations have been performed to study the 4^4He adsorption on γ\gamma-graphyne, a planar network of benzene rings connected by acetylene bonds. Assuming the 4^4He-substrate interaction described by a pairwise sum of empirical 4^4He-carbon interatomic potentials, we find that unlike α\alpha-graphyne, a single sheet of γ\gamma-graphyne is not permeable to 4^4He atoms in spite of its large surface area. One-dimensional density distributions computed as a function of the distance from the graphyne surface reveal a layer-by-layer growth of 4^4He atoms. A partially-filled 4^4He monolayer is found to exhibit different commensurate solid structures depending on the helium coverage; it shows a C2/3_{2/3} commensurate structure at an areal density of 0.0491\AA2^{-2}, a C3/3_{3/3} structure at 0.0736\AA2^{-2}, and a C4/3_{4/3} structure at 0.0982\AA2^{-2}. While the promotion to the second layer starts beyond the C4/3_{4/3} helium coverage, the first 4^4He layer is found to form an incommensurate triangular solid when compressed with the development of the second layer.

Keywords

Cite

@article{arxiv.1405.4109,
  title  = {Commensurate-incommensurate solid transition in the $^4$He monolayer on $\gamma$-graphyne},
  author = {Jeonghwan Ahn and Hoonkyung Lee and Yongkyung Kwon},
  journal= {arXiv preprint arXiv:1405.4109},
  year   = {2014}
}