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Superconductivity and Mottness in Organic Charge Transfer Materials

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arxiv 2401.10650 v2 pith:A56IS5L5 submitted 2024-01-19 cond-mat.str-el cond-mat.supr-con

Superconductivity and Mottness in Organic Charge Transfer Materials

classification cond-mat.str-el cond-mat.supr-con
keywords phasesuperconductivityassociateddiagramsfermilatticeliquidmodel
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The phase diagrams of quasi two-dimensional organic superconductors display a plethora of fundamental phenomena associated with strong electron correlations, such as unconventional superconductivity, metal-insulator transitions, frustrated magnetism and spin liquid behavior. We analyze a minimal model for these compounds, the Hubbard model on an anisotropic triangular lattice, using cutting-edge quantum embedding methods respecting the lattice symmetry. We demonstrate the existence of unconventional superconductivity by directly entering the symmetry-broken phase. We show that the crossover from the Fermi liquid metal to the Mott insulator is associated with the formation of a pseudogap. The predicted momentum-selective destruction of the Fermi surface into hot and cold regions provides motivation for further spectroscopic studies. Our results are in remarkable agreement with experimental phase diagrams of $\kappa$-BEDT organics.

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