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      Concepts relating magnetic interactions, intertwined electronic orders, and strongly correlated superconductivity

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      Proceedings of the National Academy of Sciences
      Proceedings of the National Academy of Sciences

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          Abstract

          Unconventional superconductivity (SC) is said to occur when Cooper pair formation is dominated by repulsive electron-electron interactions, so that the symmetry of the pair wave function is other than an isotropic s-wave. The strong, on-site, repulsive electron-electron interactions that are the proximate cause of such SC are more typically drivers of commensurate magnetism. Indeed, it is the suppression of commensurate antiferromagnetism (AF) that usually allows this type of unconventional superconductivity to emerge. Importantly, however, intervening between these AF and SC phases, intertwined electronic ordered phases (IP) of an unexpected nature are frequently discovered. For this reason, it has been extremely difficult to distinguish the microscopic essence of the correlated superconductivity from the often spectacular phenomenology of the IPs. Here we introduce a model conceptual framework within which to understand the relationship between AF electron-electron interactions, IPs, and correlated SC. We demonstrate its effectiveness in simultaneously explaining the consequences of AF interactions for the copper-based, iron-based, and heavy-fermion superconductors, as well as for their quite distinct IPs.

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          Superexchange mechanism andd-wave superconductivity

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            Quantum oscillations and the Fermi surface in an underdoped high-Tc superconductor

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              Towards resolution of the Fermi surface in underdoped high-Tcsuperconductors

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                Author and article information

                Journal
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                0027-8424
                1091-6490
                October 29 2013
                October 29 2013
                October 10 2013
                October 29 2013
                : 110
                : 44
                : 17623-17630
                Article
                10.1073/pnas.1316512110
                3816467
                24114268
                158dae50-485e-4dc7-abc0-f3872fc200c0
                © 2013
                History

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