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Photoemission "experiments" on holographic superconductors
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We study the effects of a superconducting condensate on holographic Fermi surfaces. With a suitable coupling between the fermion and the condensate, there are stable quasiparticles with a gap. We find some similarities with the phenomenology of the cuprates: in systems whose normal state is a non-Fermi liquid with no stable quasiparticles, a stable quasiparticle peak appears in the condensed phase.
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Cited by 2 Pith papers
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Topology in Holographic Mean-Field Theory at Zero and Finite Temperature
Holographic mean-field theory produces a quantized half-integer Chern number for one fermion flavor and integer Chern numbers for two flavors, robust to temperature and interaction strength.
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Symmetric Tensor Coupling in Holographic Mean-Field Theory: Deformed Dirac Cones
A rank-two symmetric tensor source in AdS5 deforms holographic fermion spectral densities into cone-angle changes, tilts, squashes, and over-tilted cones, classified by simple momentum rescalings.
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