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- W2024562217 abstract "Two remarkable features emerge from the exact Wilsonian procedure for integrating out the high-energy scale in the Hubbard model. At low energies, the number of excitations that couple minimally to the electromagnetic gauge is less than the conserved charge, thereby implying a breakdown of Fermi liquid theory. In addition, two charge $e$ excitations emerge in the lower band, the standard projected electron and a composite entity (comprised of a hole and a charge $2e$ bosonic field) which give rise to poles and zeros of the single-particle Green function, respectively. The poles generate spectral weight along an arc centered at $(pi/2,pi/2)$ while the zeros kill the spectral intensity on the back-side of the arc. The result is the Fermi arc structure intrinsic to cuprate phenomenology. The presence of composite excitations also produces a broad incoherent pseudogap feature at the $(pi,0)$ region of the Brillouin zone, thereby providing a mechanism for the nodal/anti-nodal dichotomy seen in the cuprates." @default.
- W2024562217 created "2016-06-24" @default.
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- W2024562217 date "2012-09-12" @default.
- W2024562217 modified "2023-09-26" @default.
- W2024562217 title "Towards the standard model for Fermi arcs from a Wilsonian reduction of the Hubbard model" @default.
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- W2024562217 doi "https://doi.org/10.1103/physrevb.86.115118" @default.
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