Floquet superconductor in holography
arXiv:1804.06785 · doi:10.1103/PhysRevD.98.126005
Abstract
We study nonequilibrium steady states in a holographic superconductor under time periodic driving by an external rotating electric field. We obtain the dynamical phase diagram. Superconducting phase transition is of first or second order depending on the amplitude and frequency of the external source. The rotating electric field decreases the superconducting transition temperature. The system can also exhibit a first order transition inside the superconducting phase. It is suggested this transition exists all the way down to zero temperature. The existence of nonequilibrium thermodynamic potential for such steady solutions is also discussed from the holographic point of view. The current induced by the electric field is decomposed into normal and superconducting components, and this makes it clear that the superconducting one dominates in low temperatures.
27 pages, 9 figures. v2: matches published version
References in corpus (19)
- Building an AdS/CFT superconductor
- Minkowski-space correlators in AdS/CFT correspondence: recipe and applications
- Quantum Criticality in Heavy Fermion Metals
- Equilibrium states of generic quantum systems subject to periodic driving
- Schwinger-Keldysh Propagators from AdS/CFT Correspondence
- Holographic model of superfluidity
- Hydrodynamics of Holographic Superconductors
- AdS/CFT with Flavour in Electric and Magnetic Kalb-Ramond Fields
- Finite Temperature Large N Gauge Theory with Quarks in an External Magnetic Field
- Defect formation beyond Kibble-Zurek mechanism and holography
- Quarks in an External Electric Field in Finite Temperature Large N Gauge Theory
- The Many Phases of Holographic Superfluids
- Non-Thermal Fixed Point in a Holographic Superfluid
- On Holographic Superconductors with DC Current
- Floquet Scalar Dynamics in Global AdS
- Driven Holographic CFTs
- Holographic Floquet states II: Floquet condensation of vector mesons in nonequilibrium phase diagram
- Time-dependent stabilization in AdS/CFT
- Phase Transitions and Conductivties of Floquet Fluids
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- Holographic Floquet states in low dimensions (II)
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- Floquet engineering multi-channel Kondo physics
- Holographic Superconductors: An Analytic Method Revisit