The anisotropic N=4 super Yang-Mills plasma and its instabilities

May, 2011
4 pages
Published in:
  • Phys.Rev.Lett. 107 (2011) 101601
e-Print:
Report number:
  • ICCUB-11-142,
  • MAD-TH-10-06

Citations per year

2011201520192023202505101520
Abstract: (arXiv)
We present a IIB supergravity solution dual to a spatially anisotropic finite-temperature N=4 super Yang-Mills plasma. The solution is static, possesses an anisotropic horizon, and is completely regular. The full geometry can be viewed as a renormalization group flow from an AdS geometry in the ultraviolet to a Lifshitz-like geometry in the infrared. The anisotropy can be equivalently understood as resulting from a position-dependent theta-term or from a non-zero number density of dissolved D7-branes. The holographic stress tensor is conserved and anisotropic. The presence of a conformal anomaly plays an important role in the thermodynamics of the system. We construct the phase diagram, which exhibits homogeneous and inhomogeneous (i.e. mixed) phases, and comment on similarities with QCD at finite baryon density. At low densities the homogeneous phase displays several instabilities reminiscent of instabilities of weakly coupled plasmas.
Note:
  • 4 pages, 3 figures; v2: typos fixed, minor changes, version to appear in PRL
  • 11.25.Tq
  • supersymmetry: 4
  • plasma: coupling
  • gauge field theory: Yang-Mills: supersymmetry
  • renormalization group: flow
  • supergravity: solution
  • anomaly: conformal
  • solution: static
  • plasma: stability
  • supergravity: Type IIB