English

Hexagonal-Close-Packed Lattice: Phase Transition and Spin Transport

Statistical Mechanics 2011-12-30 v1

Abstract

We study the ground state (GS) and the phase transition in a hexagonal-close-packed lattice with both XY and Ising models by using extensive Monte Carlo simulation. We suppose the in-plane interaction J1J_1 and inter-plane interaction J2J_2, both antiferromagnetic. The system is frustrated with two kinds of GS configuration below and above a critical value of η=J1/J2\eta=J_1/J_2 (ηc\eta_c). For the Ising case, one has ηc=0.5\eta_c=0.5 which separates in-plane ferromagnetic and antiferromagnetic states, while for the XY case ηc=1/3\eta_c=1/3 separates the collinear and non collinear spin configurations. The phase transition is shown to be of first (second) order for η>(<)ηc\eta> (<) \eta_c. The spin resistivity is calculated for the Ising case. It shows a rounded maximum at the magnetic transition in the second-order region, and a discontinuity in the first-order region of η\eta.

Keywords

Cite

@article{arxiv.1112.5724,
  title  = {Hexagonal-Close-Packed Lattice: Phase Transition and Spin Transport},
  author = {Danh-Tai Hoang and H. T. Diep},
  journal= {arXiv preprint arXiv:1112.5724},
  year   = {2011}
}
R2 v1 2026-06-21T19:56:42.101Z