Phases and phase transitions of U(1)×SU(2) symmetric holographic matter
Publication date
2025-03-04
Authors
Järvinen, M.
Kiritsis, E.
Nitti, F.
Préau, Edwan
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
cc_by
Abstract
The phase diagram and symmetry breaking patterns of a holographic CFT with U(1) × SU(2) symmetry are analyzed using the simplest holographic action, namely Einstein-Yang-Mills (YM) theory with a negative cosmological constant. This is relevant for both condensed matter and QCD applications. With a U(1) and an “isospin” chemical potential turned on, we determine all possible symmetry breaking patterns, which are associated to the condensation of spin-one order parameters. The possible IR asymptotics of the Einstein-YM solutions are derived analytically, both for 2+1 and 3+1 boundary dimensions. The competing solutions are then computed numerically, both at zero and non-zero temperature, from which the full three-dimensional phase diagram is determined. We find a surface of second order phase transitions that separate uncondensed and condensed phases. In some regions with a large fraction of charged to neutral degrees of freedom, the phase transition becomes first order.
Keywords
AdS-CFT Correspondence, Finite Temperature or Finite Density, Spontaneous Symmetry Breaking, Nuclear and High Energy Physics
Citation
Järvinen, M, Kiritsis, E, Nitti, F & Préau, E 2025, 'Phases and phase transitions of U(1)×SU(2) symmetric holographic matter', Journal of High Energy Physics, vol. 2025, no. 3, 5. https://doi.org/10.1007/JHEP03(2025)005