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Emergent BCS regime of the two-dimensional fermionic Hubbard model: Ground-state phase diagram

Youjin DengDepartment of Physics, University of Massachusetts - Amherst, MA 01003, USAEvgeny KozikCentre de Physique Théorique, Ecole Polytechnique, CNRS - 91128 Palaiseau Cedex, FranceNikolay V. Prokof'evDepartment of Physics, University of Massachusetts - Amherst, MA 01003, USABoris V. SvistunovDepartment of Physics, University of Massachusetts - Amherst, MA 01003, USA
2015en
ABI

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A significant part of the phase diagram of the two-dimensional fermionic Hubbard model for moderate interactions and filling factors ($U < 4, \, n<0.7$) is governed by effective Fermi liquid physics with weak BCS-type instabilities. We access this regime in a controlled way by a combination of the bold-line diagrammatic Monte Carlo method with an additional ladder-diagram summation trick and semi-analytic treatment of the weak instability in the Cooper channel. We obtain the corresponding ground-state phase diagram in the $(n,U)$ plane describing the competition between the $p-$ and $d-$wave superfluid states. We also claim the values of the dimensionless BCS coupling constants controlling the superfluid $T_c$ at the phase boundaries, which prove to be very small up to $U=4, n = 0.6$.

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