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Fermi surfaces in maximal gauged supergravity
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We obtain fermion fluctuation equations around extremal charged black hole geometries in maximal gauged supergravity in four and five dimensions, and we demonstrate that their solutions display Fermi surface singularities for the dual conformal field theories at finite chemical potential. The four-dimensional case is a massless charged fermion, while in five dimensions we find a massive charged fermion with a Pauli coupling. In both cases, the corresponding scaling exponent is less than one half, leading to non-Fermi liquid behavior with no stable quasiparticles, although some excitations have widths more than ten times smaller than their excitation energy. In the five-dimensional case, both the Fermi momentum and the scaling exponent appear to have simple values, and a Luttinger calculation suggests that the gauginos may carry most of the charge of the black hole.
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The spectral gap of the ABJM model: A holographic perspective from uplifted higher-dimensional geometries
The paper claims a spectral gap in the ABJM dual of a 4d four-charge black brane arising from non-commuting limits, and reports an AdS3/BTZ sector after uplift, but the promised Green's function analysis is absent.
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