English

Three-dimensional super Yang-Mills with compressible quark matter

High Energy Physics - Theory 2016-04-20 v1

Abstract

We construct the gravity dual of three-dimensional, SU(Nc)SU(N_{\textrm{c}}) super Yang-Mills theory with NfN_{\textrm{f}} flavors of dynamical quarks in the presence of a non-zero quark density NqN_{\textrm{q}}. The supergravity solutions include the backreaction of NcN_{\textrm{c}} color D2-branes and NfN_{\textrm{f}} flavor D6-branes with NqN_{\textrm{q}} units of electric flux on their worldvolume. For massless quarks, the solutions depend non-trivially only on the dimensionless combination ρ=Nc2Nq/λ2Nf4\rho=N_{\textrm{c}}^2 N_{\textrm{q}} / \lambda^2 N_{\textrm{f}}^4, with λ=gYM2Nc\lambda=g_{\textrm{YM}}^2 N_{\textrm{c}} the 't Hooft coupling, and describe renormalization group flows between the super Yang-Mills theory in the ultraviolet and a non-relativistic theory in the infrared. The latter is dual to a hyperscaling-violating, Lifshitz-like geometry with dynamical and hyperscaling-violating exponents z=5z=5 and θ=1\theta=1, respectively. If ρ1\rho \ll 1 then at intermediate energies there is also an approximate AdS4_4 region, dual to a conformal Chern-Simons-Matter theory, in which the flow exhibits quasi-conformal dynamics. At zero temperature we compute the chemical potential and the equation of state and extract the speed of sound. At low temperature we compute the entropy density and extract the number of low-energy degrees of freedom. For quarks of non-zero mass MqM_{\textrm{q}} the physics depends non-trivially on ρ\rho and MqNc/λNfM_{\textrm{q}} N_{\textrm{c}}/\lambda N_{\textrm{f}}.

Keywords

Cite

@article{arxiv.1511.05484,
  title  = {Three-dimensional super Yang-Mills with compressible quark matter},
  author = {Antón F. Faedo and Arnab Kundu and David Mateos and Christiana Pantelidou and Javier Tarrío},
  journal= {arXiv preprint arXiv:1511.05484},
  year   = {2016}
}

Comments

32 pages plus appendices, 11 figures

R2 v1 2026-06-22T11:47:39.982Z