Ferromagnetism in ABC-stacked trilayer graphene
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2013
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Abstract
In this article we study the ferromagnetic behavior of ABC-stacked trilayer graphene. This is done using a nearest-neighbor tight-binding model, in the presence of long-range Coulomb interactions. For a given electron-electron interaction g and doping level n, we determine whether the total energy is minimized for a paramagnetic or ferromagnetic configuration of our variational parameters. The g versus n phase diagram is first calculated for the unscreened case. We then include the effects of screening using a simplified expression for the fermion bubble diagram. We show that ferromagnetism in ABC-stacked trilayer graphene is more robust than in monolayer, in bilayer, and in ABA-stacked trilayer graphene. Although the screening reduces the ferromagnetic regime in ABC-stacked trilayer graphene, the critical doping level remains one order of magnitude larger than in unscreened bilayer graphene.
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Olsen, R, van Gelderen, R & de Morais Smith, C 2013, 'Ferromagnetism in ABC-stacked trilayer graphene', Physical Review B - Condensed Matter and Materials Physics, vol. 87, no. 11, 115414, pp. 115414 /1-115414 /10. https://doi.org/10.1103/PhysRevB.87.115414