Abstract
Tight-binding model of the AA-stacked bilayer graphene with screened electron-electron interactions has been studied using the Hybrid Monte Carlo simulations on the original double-layer hexagonal lattice. Instantaneous screened Coulomb potential is taken into account using Hubbard-Stratonovich transformation. G-type antiferromagnetic ordering has been studied and the phase transition with spontaneous generation of the mass gap has been observed. Dependence of the antiferromagnetic condensate on the on-site electron-electron interaction is examined.
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CITATION STYLE
Nikolaev, A., & Ulybyshev, M. (2014). Monte-Carlo study of the phase transition in the AA-stacked bilayer graphene. In Proceedings of Science (Vol. Part F130500). Proceedings of Science (PoS). https://doi.org/10.22323/1.214.0054
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