Holographic superfluid/fluid/insulator phase transitions in 2+1 dimensions
arXiv:1101.5708 · doi:10.1103/PhysRevD.83.126008
Abstract
We study the breaking of an Abelian symmetry close to the horizon of a black string as well as close to the tip of a solitonic, cigar-shaped solution in (3+1)-dimensional Anti-de Sitter space-time. We use these solutions to describe holographic superfluids away from the probe limit, i.e. taking backreaction into account. We observe that up to four phases exist in this model representing the duals of black string solutions with and without scalar hair and solitonic, cigar-shaped solutions with and without scalar hair, respectively. We construct the full phase diagram that describes the phase transitions between fluids and superfluids, between insulators and superfluids as well as between insulators and fluids. In the probe limit the phase transition from fluids to black string superfluids changes from being second order to first order for sufficiently large values of the superfluid velocity and/or the angular momentum of the dual black string. We find that if we take backreaction into account phase transitions that are first order for weak backreaction become again second order for sufficiently strong backreaction. Moreover, we find a new type of insulator/superfluid phase transition for strong backreaction and vanishing superfluid velocity as well as a new type of fluid/superfluid phase transition that exists only for non-vanishing superfluid velocity.
18 pages including 9 figures
References in corpus (7)
- Building an AdS/CFT superconductor
- Lectures on Holographic Superfluidity and Superconductivity
- Holographic Superconductors with Various Condensates
- Holographic model of superfluidity
- Complete Phase Diagrams for a Holographic Superconductor/Insulator System
- Black string solutions with negative cosmological constant
- The Many Phases of Holographic Superfluids
Cited by in corpus (29)
- Introduction to Holographic Superconductor Models
- Analytical investigation of the phase transition between holographic insulator and superconductor in Gauss-Bonnet gravity
- Holographic Entanglement Entropy in P-wave Superconductor Phase Transition
- Holographic insulator/superconductor phase transition with Weyl corrections
- Analytical study on holographic superconductors with backreactions
- Holographic superconductor models with the Maxwell field strength corrections
- Non-equilibrium condensation process in holographic superconductor with nonlinear electrodynamics
- Supersymmetric Q-balls and boson stars in (d+1) dimensions
- Magnetic Field Effect on the Phase Transition in AdS Soliton Spacetime
- Compact (A)dS Boson Stars and Shells
- Glueball condensates as holographic duals of supersymmetric Q-balls and boson stars
- Analytic study on backreacting holographic superconductors with dark matter sector
- P-wave holographic superconductor/insulator phase transitions affected by dark matter sector
- Introductory notes on holographic superconductors
- Holographic Spontaneous Parity Breaking and Emergent Hall Viscosity and Angular Momentum
- Rotating BTZ Black Holes and One Dimensional Holographic Superconductors
- Phase transitions in AdS soliton spacetime through marginally stable modes
- Analytic investigation of holographic phase transitions influenced by dark matter sector
- Holographic insulator/superconductor phase transitions with excited states
- Holographic Superconductors in a Rotating Spacetime
- Exact \textit{pp}-waves, (A)dS waves and Kundt spaces in the Abelian-Higgs model
- Observing various phase transitions in the holographic model of superfluidity
- Viscosity bound for anisotropic superfluids with dark matter sector
- Superconducting Hair on Charged Black String Background
- Generalized extremal branes in AdS/CMT and holographic superconductors
- Stability of black holes and solitons in Anti-de Sitter space-time
- Magnetic Critical Solutions in Holography
- Holographic superconductivity in the presence of dark matter: basic issues
- Renormalization Group Flows in Non-Relativistic Holographic Effective Field Theories