Holographic Superconducting Quantum Interference Device
arXiv:1309.5641 · doi:10.1142/S0217751X15500402
Abstract
We present a holographic model of the SQUID (Superconducting QUantum Interference Device) in the external magnetic field. The model of the gravitational theory considered in this paper is the Einstein-Maxwell-complex scalar model on the four-dimensional Anti-de Sitter Schwarzschild black brane geometry, where one space direction is compacted into a circle and we arrange the coefficient of the time components profile so that we can model the SQUID, where the profile plays the role of the chemical potential for the cooper pair.
17 pages, 13 figures; (v4) Published version
References in corpus (11)
- Building an AdS/CFT superconductor
- A Non-Fermi Liquid from a Charged Black Hole; A Critical Fermi Ball
- Hall conductivity from dyonic black holes
- A Holographic Superconductor in an External Magnetic Field
- Holographic SIS Josephson Junction
- A holographic model of SQUID
- Holographic Josephson Junction in 3+1 dimensions
- Non-relativistic Josephson Junction from Holography
- Comments on Chemical Potentials in AdS/CFT
- Superconductivity, Superfluidity and Holography
- Wilson Line Response of Holographic Superconductors in Gauss-Bonnet Gravity
Cited by in corpus (8)
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- Holographic superconductors with Weyl corrections
- Gravitational waves and electrodynamics: New perspectives
- Holographic model of hybrid and coexisting s-wave and p-wave Josephson junction
- Non-relativistic Josephson Junction from Holography
- Excited states of holographic superconductors
- Holographic s-wave and p-wave Josephson junction with backreaction
- Excited states of holographic superconductors with backreaction