Numerical holographic study finds nonlinear electrodynamics suppresses s and p condensates differently, induces spontaneous charge accumulation outside the horizon, and modifies optical conductivity with a minimum in the imaginary part.
Holographic model of the S^{+/-} multiband superconductor
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abstract
We construct the holographic model of an $S^\pm$ multiband superconductor. This system is a candidate to explain the anomalous features of the iron-based superconductors (e.g. LaFeAsO, BFe2As2, and other pnictides and arsenides). We study the framework, which allows formation of the sign-interchanging order parameter. We also calculate the electric AC conductivity and study its features, related to the interband interaction.
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hep-th 1years
2026 1verdicts
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Holographic s+p superconductors with nonlinear electrodynamics
Numerical holographic study finds nonlinear electrodynamics suppresses s and p condensates differently, induces spontaneous charge accumulation outside the horizon, and modifies optical conductivity with a minimum in the imaginary part.