Inhomogeneous Structures in Holographic Superfluids: II. Vortices
arXiv:0912.4280 · doi:10.1103/PhysRevD.81.126012
Abstract
We study vortex solutions in a holographic model of Herzog, Hartnoll, and Horowitz, with a vanishing external magnetic field on the boundary, as is appropriate for vortices in a superfluid. We study relevant length scales related to the vortices and how the charge density inside the core of the vortex behaves as a function of temperature or chemical potential. We extract the critical superfluid velocity from the vortex solutions, study how it behaves as a function of the temperature, and compare it to earlier studies and to the Landau criterion. We also comment on the possibility of a Berezinskii-Kosterlitz-Thouless vortex confinement-deconfinement transition.
32 pages, 10 figures, typos corrected, references added
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- Heating up quadruply quantized vortices: Splitting patterns and dynamical transitions
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- Dissipation and Decay of Three Dimensional Holographic Quantum Turbulence
- (In)stability of symbiotic vortex-bright soliton in holographic immiscible binary superfluids
- A domain wall and chiral edge currents in holographic chiral phase transitions
- Chiral Condensation and Chiral Phase Diagram under Combined Rotation and Chemical Potential in Holographic QCD