PaperPanorama

HEP Lattice·hep-lat

Thu·Sep 27, 2001

2 papers2 primary·0 cross-listed·reconstructed*

  1. 01*

    Diquark condensation in dense adjoint matter

    S.Hands🇬🇧 · I.Montvay🇩🇪 · L.Scorzato🇬🇧 · J.Skullerud🇩🇪

    We study SU(2) lattice gauge theory at non-zero chemical potential with one staggered quark flavor in the adjoint representation. In this model the fermion determinant, although real, can be both positive and negative. We have performed numerical simulations using both hybrid Monte Carlo and two-step multibosonic algorithms, the latter being capable of exploring sectors with either determinant sign. We find that the positive determinant sector behaves like a two-flavor theory, with the chiral condensate rotating into a two-flavor diquark condensate for mu>m_pi/2, implying a superfluid ground state. Good agreement is found with analytical predictions made using chiral perturbation theory. In the `full' model there is no sign of either onset of baryon density or diquark condensation for the range of chemical potentials we have considered. The impact of the sign problem has prevented us from exploring the true onset transition and the mode of diquark condensation, if any, for this model.

    hep-lathep-phnucl-thEPJC(2001)·69 citations
  2. 02*

    External Field Dependence of Deconfinement Temperature in SU(3)

    Paolo Cea🇮🇹 · Leonardo Cosmai🇮🇹

    We study vacuum dynamics of SU(3) lattice gauge theory at finite temperature. Using the lattice Schrödinger functional, SU(3) vacuum is probed by means of an external constant Abelian chromomagnetic field. Our preliminary numerical data suggest that, by increasing the strength of the applied external field, deconfinement temperature decreases towards zero. This means that strong enough Abelian chromomagnetic fields destroy confinement of color.

    hep-latNucl.Phys.B Proc.Suppl.(2002)·2 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.