Thermodynamic Properties of Holographic superfluids
arXiv:1802.05116
Abstract
Using the holographic model for spontaneous symmetry breaking, we study some properties of the dual superfluid such as the thermodynamic exponents, Joule-Thomson coefficient, compressibility etc. Our focus is on how these properties vary with the scaling dimension and the charge of the operator that undergoes condensation.
Many figures, 32 pages
References in corpus (9)
- Theory of ultracold Fermi gases
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- Measurement of the Entropy and Critical Temperature of a Strongly Interacting Fermi Gas
- Universal far-from-equilibrium Dynamics of a Holographic Superconductor
- The Many Phases of Holographic Superfluids
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- General holographic superconductor models with backreactions
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Cited by in corpus (7)
- Joule-Thomson expansion of charged Gauss-Bonnet black holes in AdS space
- Joule-Thomson expansion of -dimensional charged AdS black holes
- On the throttling process of the Kerr-Newman-anti-de Sitter black holes in the extended phase space
- Joule-Thomson expansion of the quasitopological black holes
- Effects of Lovelock gravity on the Joule-Thomson expansion
- Joule-Thomson expansion of the torus-like black hole
- Joule-Thomson expansion of Reissner-Nordström-Anti-de Sitter black holes with cloud of strings and quintessence