Three loop HTL perturbation theory at finite temperature and chemical potential

Strickland M, Andersen JO, Bandyopadhyay A, Haque N, Mustafa MG, Su N (2014)
Nuclear Physics A 931: 841-845.

Journal Article | Published | English

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In this proceedings contribution we present a recent three-loop hard-thermal-loop perturbation theory (HTLpt) calculation of the thermodynamic potential for a finite temperature and chemical potential system of quarks and gluons. We compare the resulting pressure, trace anomaly, and diagonal/off-diagonal quark susceptibilities with lattice data. We show that there is good agreement between the three-loop HTLpt analytic result and available lattice data. (C) 2014 Elsevier B.V. All rights reserved.
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Strickland M, Andersen JO, Bandyopadhyay A, Haque N, Mustafa MG, Su N. Three loop HTL perturbation theory at finite temperature and chemical potential. Nuclear Physics A. 2014;931:841-845.
Strickland, M., Andersen, J. O., Bandyopadhyay, A., Haque, N., Mustafa, M. G., & Su, N. (2014). Three loop HTL perturbation theory at finite temperature and chemical potential. Nuclear Physics A, 931, 841-845.
Strickland, M., Andersen, J. O., Bandyopadhyay, A., Haque, N., Mustafa, M. G., and Su, N. (2014). Three loop HTL perturbation theory at finite temperature and chemical potential. Nuclear Physics A 931, 841-845.
Strickland, M., et al., 2014. Three loop HTL perturbation theory at finite temperature and chemical potential. Nuclear Physics A, 931, p 841-845.
M. Strickland, et al., “Three loop HTL perturbation theory at finite temperature and chemical potential”, Nuclear Physics A, vol. 931, 2014, pp. 841-845.
Strickland, M., Andersen, J.O., Bandyopadhyay, A., Haque, N., Mustafa, M.G., Su, N.: Three loop HTL perturbation theory at finite temperature and chemical potential. Nuclear Physics A. 931, 841-845 (2014).
Strickland, Michael, Andersen, Jens O., Bandyopadhyay, Aritra, Haque, Najmul, Mustafa, Munshi G., and Su, Nan. “Three loop HTL perturbation theory at finite temperature and chemical potential”. Nuclear Physics A 931 (2014): 841-845.
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