d-wave superconductivity in the presence of a near neighbor Coulomb repulsion
arXiv:1707.06093 · doi:10.1103/PhysRevB.97.184507
Abstract
Dynamic cluster quantum Monte Carlo calculations for a doped two-dimensional extended Hubbard model are used to study the stability and dynamics of -wave pairing when a near neighbor Coulomb repulsion is present in addition to the on-site Coulomb repulsion . We find that -wave pairing and the superconducting transition temperature are only weakly suppressed as long as does not exceed . This stability is traced to the strongly retarded nature of pairing that allows the -wave pairs to minimize the repulsive effect of . When approaches , large momentum charge fluctuations are found to become important and to give rise to a more rapid suppression of -wave pairing and than for smaller .
5 pages, 4 figures
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