QCD at nonzero chemical potential and temperature from the lattice

Allton CR, Ejiri S, Hands SJ, Kaczmarek O, Karsch F, Laermann E, Schmidt C, Scorzato L (2002) .

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Abstract
A study of QCD at non-zero chemical potential, mu, and temperature, T, is performed using the lattice technique. The transition temperature (between the confined and deconfined phases) is determined as a function of mu and is found to be in agreement with other work. In addition the variation of the pressure and energy density with mu is obtained for small positive mu. These results are of particular relevance for heavy-ion collision experiments.
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Allton CR, Ejiri S, Hands SJ, et al. QCD at nonzero chemical potential and temperature from the lattice. 2002.
Allton, C. R., Ejiri, S., Hands, S. J., Kaczmarek, O., Karsch, F., Laermann, E., Schmidt, C., et al. (2002). QCD at nonzero chemical potential and temperature from the lattice.
Allton, C. R., Ejiri, S., Hands, S. J., Kaczmarek, O., Karsch, F., Laermann, E., Schmidt, C., and Scorzato, L. (2002). QCD at nonzero chemical potential and temperature from the lattice.
Allton, C.R., et al., 2002. QCD at nonzero chemical potential and temperature from the lattice.
C.R. Allton, et al., “QCD at nonzero chemical potential and temperature from the lattice”, 2002.
Allton, C.R., Ejiri, S., Hands, S.J., Kaczmarek, O., Karsch, F., Laermann, E., Schmidt, C., Scorzato, L.: QCD at nonzero chemical potential and temperature from the lattice. (2002).
Allton, C. R, Ejiri, S., Hands, S. J, Kaczmarek, Olaf, Karsch, Frithjof, Laermann, Edwin, Schmidt, Christian, and Scorzato, L. “QCD at nonzero chemical potential and temperature from the lattice”. (2002).
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