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Semi-Metal-Insulator Transition of the Hubbard Model in the Honeycomb Lattice

Europhysics Letters (EPL) · 1992 · Vol. 19(8) · pp. 699–704
Sandro SorellaErio Tosatti

Abstract

Using quantum Monte Carlo and finite-size scaling for the Hubbard model, we find evidence of a zero-temperature transition between the nonmagnetic semi-metal and an antiferromagnetic insulator in the 2D honeycomb lattice for a nontrivial value of U/t = 4.5 ± 0.5. The corresponding transition in Hartree-Fock mean field is at U/t = 2.23, which indicates the importance of quantum fluctuations. This represents the first example of Mott-Hubbard transition in a 2D bipartite lattice. Similar transitions are predicted for special lattices in higher dimensions, in particular for the 3D diamond lattice.

Physics of Superconductivity and MagnetismAdvanced Condensed Matter PhysicsQuantum and electron transport phenomenaCondensed matter physicsHubbard modelAntiferromagnetismLattice (music)Quantum Monte CarloPhysicsScalingMetal–insulator transitionQuantumMonte Carlo method
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384
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References
Application of Gutzwiller's Variational Method to the Metal-Insulator Transition
Physical review. B, Solid state · 1970 · 1,235 citations
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