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Mean field theory for strongly coupled systems: Holographic approach
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In this paper, we develop the holographic mean field theory for strongly interacting fermion systems. We investigate various types of the symmetry-breakings and their effect on the spectral function. We found analytic expressions of fermion Green's functions in the probe-limit for all types of tensor order parameter fields. We classified the spectral shapes and singularity types from the analytic Green's function. We calculated the fermions spectral function in the full backreacted background and then compared it with the analytic results to show the reliability of analytic results in the probe limit.
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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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