Deconstructing Superconductivity
Dylan Albrecht, Christopher D. Carone, Joshua Erlich

TL;DR
This paper introduces a novel 2+1 dimensional holographic superconductor model with multiple fields and hidden symmetries, deriving relations for current and charge density, and analyzing condensate and conductivity properties.
Contribution
It presents a dimensionally deconstructed holographic superconductor model with complex interactions and derived AdS/CFT-like relations, advancing theoretical understanding.
Findings
Derived relations for current and charge density.
Analyzed Cooper pair condensates and conductivity.
Introduced multiple charged and neutral fields with hidden symmetries.
Abstract
We present a dimensionally deconstructed model of an s-wave holographic superconductor. The 2+1 dimensional model includes multiple charged Cooper pair fields and neutral exciton fields that have interactions governed by hidden local symmetries. We derive AdS/CFT-like relations for the current and charge density in the model, and we analyze properties of the Cooper pair condensates and the complex conductivity.
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