The Hubbard model on the honeycomb lattice describes charge carriers in graphene with short range interactions. While the interaction modifies several physical quantities, like the value of the Fermi velocity or the wave function renormalization, the a.c. conductivity has a universal value independent of the microscopic details of the model: there are no interaction corrections, provided that the interaction is weak enough and that the system is at half filling. We give a rigorous proof of this fact, based on exact Ward Identities and on constructive Renormalization Group methods.

Giuliani, A., Mastropietro, V., Porta, M. (2012). Universality of Conductivity in Interacting Graphene. COMMUNICATIONS IN MATHEMATICAL PHYSICS, 311(2), 317-355 [10.1007/s00220-012-1444-9].

Universality of Conductivity in Interacting Graphene

GIULIANI, ALESSANDRO;MASTROPIETRO, VIERI;
2012-01-01

Abstract

The Hubbard model on the honeycomb lattice describes charge carriers in graphene with short range interactions. While the interaction modifies several physical quantities, like the value of the Fermi velocity or the wave function renormalization, the a.c. conductivity has a universal value independent of the microscopic details of the model: there are no interaction corrections, provided that the interaction is weak enough and that the system is at half filling. We give a rigorous proof of this fact, based on exact Ward Identities and on constructive Renormalization Group methods.
2012
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MAT/07 - FISICA MATEMATICA
English
Con Impact Factor ISI
Giuliani, A., Mastropietro, V., Porta, M. (2012). Universality of Conductivity in Interacting Graphene. COMMUNICATIONS IN MATHEMATICAL PHYSICS, 311(2), 317-355 [10.1007/s00220-012-1444-9].
Giuliani, A; Mastropietro, V; Porta, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/89105
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