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arXiv:hep-lat/0104010·v1·High Energy Physics — Lattice

Diquark Condensation at Nonzero Chemical Potential and Temperature

John B. Kogut🇺🇸 · Dominique Toublan🇺🇸 · D.K. Sinclair🇺🇸

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Abstract

SU(2) lattice gauge theory with four flavors of quarks is studied at nonzero chemical potential and temperature by computer simulation and Effective Lagrangian techniques. Simulations are done on , and lattices and the diquark condensate, chiral order parameter, Wilson line, fermion energy and number densities are measured. Simulations at a fixed, nonzero quark mass provide evidence for a tricritical point in the - plane associated with diquark condensation. For low , increasing takes the system through a line of second order phase transitions to a diquark condensed phase. Increasing at high , the system passes through a line of first order transitions from the diquark phase to the quark-gluon plasma phase. Using Effective Lagrangians we estimate the position of the tricritical point and ascribe its existence to trilinear couplings that increase with and .

Comments: 18 pages revtex, 11 figures postscript

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