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arXiv:1304.1711·v2·Strongly Correlated Electrons

Velocity renormalization in graphene from lattice Monte Carlo

Joaquín E. Drut🇺🇸 · Timo A. Lähde🇩🇪

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Abstract

We compute the Fermi velocity of the Dirac quasiparticles in clean graphene at the charge neutrality point for strong Coulomb coupling alpha_g. We perform a Lattice Monte Carlo calculation within the low-energy Dirac theory, which includes an instantaneous, long-range Coulomb interaction. We find a renormalized Fermi velocity v_FR > v_F, where v_F = c/300. Our results are consistent with a momentum-independent v_FR which increases approximately linearly with alpha_g, although a logarithmic running with momentum cannot be excluded at present. At the predicted critical coupling alpha_gc for the semimetal-insulator transition due to excitonic pair formation, we find v_FR/v_F = 3.3, which we discuss in light of experimental findings for v_FR/v_F at the charge neutrality point in ultra-clean suspended graphene.

Comments: 7 pages, 2 figures, title changed, to appear in the proceedings of the 31st International Symposium on Lattice Field Theory (LATTICE 2013)

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