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Report number arXiv:1612.02337
Title Thermodynamics of strongly interacting plasma with high accuracy
Author(s) Giusti, Leonardo (CERN ; INFN, Milan Bicocca ; Milan Bicocca U. ; Geneva U., Dept. Theor. Phys.) ; Pepe, Michele (INFN, Milan Bicocca)
Publication SISSA, 2016-11-28
Imprint 2016-12-07
Number of pages 7
In: PoS LATTICE2016 (2016) 061
In: 34th International Symposium on Lattice Field Theory, Southampton, UK, 24 - 30 Jul 2016, pp.061
DOI 10.22323/1.256.0061
Subject category hep-lat ; Particle Physics - Lattice
Abstract The equation of state of $SU(3)$ Yang-Mills theory is investigated in the framework of a moving reference frame. Results for the entropy density, the pressure, the energy density, and the trace anomaly are presented for temperatures ranging from 0 to 230 $T_c$, with $T_c$ the deconfinement temperature. The entropy density is the primary observable that has been measured and form which the other thermodynamic quantities are obtained. At least 4 different values of the lattice spacing have been considered at each physical temperature in order to extrapolate to the continuum limit. The final accuracy is 0.5%, increasing to about 1% close to the phase transition. A detailed comparison with the results available in the literature is discussed.
Copyright/License arXiv nonexclusive-distrib. 1.0
publication: (License: CC-BY-NC-SA)



Corresponding record in: Inspire


 Record created 2017-01-13, last modified 2023-03-20


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