2026-07-072026-07-07http://salesiana.dossiersoluciones.com/handle/123456789/215860We present evidence, from Lattice Monte Carlo simulations of the phase diagram of graphene as a function of the Coulomb coupling between quasiparticles, that graphene in vacuum is likely to be an insulator. We find a semimetal-insulator transition at $α_g^\text{crit} = 1.11 \pm 0.06$, where $α_g^{} \simeq 2.16$ in vacuum, and $α_g^{} \simeq 0.79$ on a SiO$_2^{}$ substrate. Our analysis uses the logarithmic derivative of the order parameter, supplemented by an equation of state. The insulating phase disappears above a critical number of four-component fermion flavors $4 < N_f^{\text{crit}} < 6$. Our data are consistent with a second-order transition.4 pages, 3 figures, published versionStrongly Correlated ElectronsHigh Energy Physics - LatticeIs graphene in vacuum an insulator?text