Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results

Borsanyi S, Endrödi G, Fodor Z, Hoelbling C, Katz S, Krieg S, Ratti C, Szabo K (2011)
Journal of Physics G: Nuclear and Particle Physics 38(12): 124101.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Borsanyi, Szabolcs; Endrödi, GergelyUniBi ; Fodor, Zoltan; Hoelbling, Christian; Katz, Sandor; Krieg, Stefan; Ratti, Claudia; Szabo, Kalman
Abstract / Bemerkung
The QCD transition is studied on lattices up to Nt = 16. The chiral condensate is presented as a function of the temperature, and the corresponding transition temperature is extracted. The equation of state is determined on lattices with Nt = 6, 8, 10 and at some temperature values with Nt = 12. The pressure and the trace anomaly are presented as functions of the temperature in the range 100–1000 MeV. Using the same configurations, we determine the continuum extrapolated phase diagram of QCD on the μ–T plane for small to moderate chemical potentials. Two transition lines are defined with two quantities, the chiral condensate and the strange quark number susceptibility.
Erscheinungsjahr
2011
Zeitschriftentitel
Journal of Physics G: Nuclear and Particle Physics
Band
38
Ausgabe
12
Art.-Nr.
124101
ISSN
0954-3899
eISSN
1361-6471
Page URI
https://pub.uni-bielefeld.de/record/2955774

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Borsanyi S, Endrödi G, Fodor Z, et al. Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results. Journal of Physics G: Nuclear and Particle Physics. 2011;38(12): 124101.
Borsanyi, S., Endrödi, G., Fodor, Z., Hoelbling, C., Katz, S., Krieg, S., Ratti, C., et al. (2011). Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results. Journal of Physics G: Nuclear and Particle Physics, 38(12), 124101. https://doi.org/10.1088/0954-3899/38/12/124101
Borsanyi, Szabolcs, Endrödi, Gergely, Fodor, Zoltan, Hoelbling, Christian, Katz, Sandor, Krieg, Stefan, Ratti, Claudia, and Szabo, Kalman. 2011. “Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results”. Journal of Physics G: Nuclear and Particle Physics 38 (12): 124101.
Borsanyi, S., Endrödi, G., Fodor, Z., Hoelbling, C., Katz, S., Krieg, S., Ratti, C., and Szabo, K. (2011). Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results. Journal of Physics G: Nuclear and Particle Physics 38:124101.
Borsanyi, S., et al., 2011. Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results. Journal of Physics G: Nuclear and Particle Physics, 38(12): 124101.
S. Borsanyi, et al., “Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results”, Journal of Physics G: Nuclear and Particle Physics, vol. 38, 2011, : 124101.
Borsanyi, S., Endrödi, G., Fodor, Z., Hoelbling, C., Katz, S., Krieg, S., Ratti, C., Szabo, K.: Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results. Journal of Physics G: Nuclear and Particle Physics. 38, : 124101 (2011).
Borsanyi, Szabolcs, Endrödi, Gergely, Fodor, Zoltan, Hoelbling, Christian, Katz, Sandor, Krieg, Stefan, Ratti, Claudia, and Szabo, Kalman. “Transition temperature and the equation of state from lattice QCD, Wuppertal–Budapest results”. Journal of Physics G: Nuclear and Particle Physics 38.12 (2011): 124101.
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