Deconfinement in dense 2-color QCD
نویسندگان
چکیده
We study SU(2) lattice gauge theory with two flavors of Wilson fermion at non-zero chemical potential μ and low temperature on a 8 × 16 system. We identify three régimes along the μ-axis. For μ . mπ/2 the system remains in the vacuum phase, and all physical observables considered remain essentially unchanged. The intermediate régime is characterised by a non-zero diquark condensate and an associated increase in the baryon density, consistent with what is expected for Bose–Einstein condensation of tightly bound diquarks. We also observe screening of the static quark potential here. In the high-density deconfined régime we find a non-zero Polyakov loop and a strong modification of the gluon propagator, including significant screening in the magnetic sector in the static limit, which must have a non-perturbative origin. The behaviour of thermodynamic observables and the superfluid order parameter are consistent with a Fermi surface disrupted by a BCS diquark condensate. The energy per baryon as a function of μ exhibits a minimum in the deconfined régime, implying that macroscopic objects such as stars formed in this theory are largely composed of quark matter.
منابع مشابه
Deconfinement Phase Transition in Hot and Dense Qcd at Large N
We conjecture that the confinement-deconfinement phase transition in QCD at large number of colors N and N f ≪ N at T = 0 and µ = 0 is triggered by the drastic change in θ behavior. The conjecture is motivated by the holographic model of QCD where confinement-deconfinement phase transition indeed happens precisely at T = Tc where θ dependence experiences a sudden change in behavior. The conject...
متن کاملParton Percolation and J/ψ Suppression
The geometric clustering of partons in the transverse plane of nuclear collisions leads for increasing A or √ s to percolation. In the resulting condensate, the partons are de-confined but not yet in thermal equilibrium. We discuss quarkonium dissociation in this precursor of the quark-gluon plasma, with an onset of dissociation when the saturation scale of the parton condensate reaches that of...
متن کاملThe QCD Phase Structure at High Baryon Density
We consider the possibility that color deconfinement and chiral symmetry restoration do not coincide in dense baryonic matter at low temperature. As a consequence, a state of massive “constituent” quarks would exist as an intermediate phase between confined nuclear matter and the plasma of deconfined massless quarks and gluons. We discuss the properties of this state and its relation to the rec...
متن کاملRelation between color-deconfinement and chiral restoration
Quantum Chromodynamics (QCD) is believed to undergo phase transitions from hadronic matter to a quark-gluon plasma (QGP) at high temperature. The QGP phase transitions can consist of two distinct transitions – the deconfinement transition and the chiral phase transition. Several theoretical studies [1] have clarified that confinement would be closely related to chiral dynamics and the confined ...
متن کاملDeconfinement transitions in dual QCD.
Color confinement in QCD is a phenomenon analogous to dual superconductivity (that is, superconductivity with electricity and magnetism interchanged). One should therefore expect that as the temperature is increased a transition is reached beyond which confinement goes away. This deconfinement transition has so far been studied mostly in the context of lattice gauge theory, 1 though some analyt...
متن کاملTwo Color QCD beyond the BEC régime
We present results of simulations of Two Color QCD using two flavors of Wilson quark in the fundamental representation, at non-zero quark chemical potential μ , on an 83×16 lattice. Results for the quark number density, quark and gluon energy densities, and superfluid condensate are qualitatively distinct from the behaviour expected on the assumption that the dominant degrees of freedom are tig...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2006