DMFT on the 2D Hubbard-Holstein model produces two Fermi-resonance peaks in electronic friction missed by MFT, with EF-LD simulations revealing substantial differences in electron population dynamics.
Jarrell, title title Hubbard model in infinite dimensions: A quantum monte carlo study
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Strong-coupling diagram technique applied to 3D Hubbard model yields paramagnetic-antiferromagnetic boundary for 4t to 12t, Mott transition near 9t, and doping-dependent Néel temperature with a plateau at strong coupling.
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A DMFT approach to evaluate electronic frictional effects near solid surfaces of strongly correlated systems
DMFT on the 2D Hubbard-Holstein model produces two Fermi-resonance peaks in electronic friction missed by MFT, with EF-LD simulations revealing substantial differences in electron population dynamics.
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Three-dimensional repulsive Hubbard model
Strong-coupling diagram technique applied to 3D Hubbard model yields paramagnetic-antiferromagnetic boundary for 4t to 12t, Mott transition near 9t, and doping-dependent Néel temperature with a plateau at strong coupling.