NPQCD

Non-perturbative Quantum Chromodynamics

 

 

SELECTED PUBLICATIONS


 
  •  P. Cea, L. Cosmai, and A. Papa, “Critical line of 2+1 flavor QCD: Toward the continuum limit”, Phys. Rev. D93 (2016) no.1, 014507, doi:10.1103/PhysRevD.93.014507 [arXiv:1508.07599 [hep-lat]].
  •  P. Cea, F. Cuteri, L. Cosmai, and A. Papa, “Flux tubes at finite temperature”, JHEP06 (2016), 033 doi:10.1007/JHEP06(2026)033, [arXiv:1511.01783 [hep-lat]].
  •  P. Cea, F. Cuteri, L. Cosmai, and A. Papa, “Flux tubes in the QCD vacuum”, Phys. Rev. D95 (2017) no.11, 114511, doi:10.1103/PhysRevD.95.114511, [arXiv:1702.06437 [hep-lat]].
  •  M. Baker, P. Cea, V. Chelnokov, F. Cuteri, L. Cosmai, and A. Papa, “Isolating the confining color field in the SU(3) flux tube”, Eur. Phys. J. C79 (2019) no.6, 478, doi:10.1140/epjc/s10052-019-6978-y, [arXiv:1810.07133 [hep-lat]].
  •  M. Baker, P. Cea, V. Chelnokov, F. Cuteri, L. Cosmai, and A. Papa, “The confining color field in SU(3) gauge theory”, accepted for publication on Eur. Phys. J. C.
  •  M. Baker, P. Cea, V. Chelnokov, L. Cosmai, F. Cuteri, A. Papa, "Isolating the confining color field in the SU(3) flux tube", arXiv:1810.07133, Eur. Phys. J. C 79 (2019) 478, 10 pages.
  •  O. Borisenko, V. Chelnokov, E. Mendicelli, A. Papa, "Three-quark potentials in an SU(3) effective Polyakov loop model", arXiv:1812.05384, Nucl. Phys. B 940 (2019) 214-238.
  •  V. Azcoiti, E. Follana, E. Royo-Amondarain, G. Di Carlo and A. V. Avilés- Casco, " Massive Schwinger model at finite $\theta$", Phys. Rev. D97 (2018) no.1, 014507, doi:10.1103/PhysRevD.97.014507, [arXiv:1709.07667 [hep- lat]].
  •  P. Cea, L. Cosmai, F. Cuteri, A. Papa, "Flux tubes at finite temperature", arXiv:1511.01783, JHEP06(2016)033, 22 pages.
  •  P. Cea, L. Cosmai, A. Papa, "Critical line in (2+1)-flavor QCD: Towards the continuum limit", arXiv:1508.07599, Phys. Rev. D 93 (2016) 014507, 9 pages.
  •  G. Clemente, M. Cardinali, C. Bonati, E. Calore, L. Cosmai, M. D'Elia, A. Gabbana, D. Rossini, F. S. Schifano, R. Tripiccione, D. Vadacchino, “Quantum computation of thermal averages in the presence of a sign problem”, Phys. Rev. D 101 (2020) 074510.
  •  C. Bonati,E. Calore, M. D'Elia, M. Mesiti, F. Negro, F. Sanfilippo, S. F. Schifano, G. Silvi, R. Tripiccione, “Roberge-Weiss endpoint and chiral symmetry restoration in N-f=2+1 QCD”, Phys. Rev. D 99 (2019) 014502.
  •  G. Margazoglou, L. Biferale, R. Grauer, K. Jansen, D. Mesterhazy, T. Rosenow, R. Tripiccione, “Hybrid Monte Carlo algorithm for sampling rare events in space-time histories of stochastic fields”, Phys. Rev. E 99 (2019) 053303.
  •  C. Bonati, S. Coscetti, M. D'Elia, M. Mesiti, F. Negro, E. Calore, S. F. Schifano, G. Silvi, R. Tripiccione, “Design and optimization of a portable LQCD Monte Carlo code using OpenACC”, Int. J. Mod. Phys. C, 28 (2017) 1750063.
  •  A. Gabbana, M. Polini, R. Tripiccione, F. M. D. Pellegrino, “Prospects for the Detection of Electronic Preturbulence in Graphene”, Phys. Rev. Lett. 121 (2018) 236602..
  •  C. Bonati, M. D'Elia, F. Negro, F. Sanfilippo and K. Zambello,``Curvature of the pseudocritical line in QCD: Taylor expansion matches analytic continuation’' Phys. Rev. D 98 (2018) no.5, 054510 doi:10.1103/PhysRevD.98.054510 [arXiv:1805.02960 [hep-lat]].
  •  C. Bonati, M. D'Elia, G. Martinelli, F. Negro, F. Sanfilippo and A. Todaro,’`Topology in full QCD at high temperature: a multicanonical approach,’' JHEP 11 (2018), 170 doi:10.1007/JHEP11(2018)170 [arXiv:1807.07954 [hep-lat]].
  •  F.LucianoandE.Meggiolaro,``Studyofthethetadependenceofthevacuum energy density in chiral effective Lagrangian models at zero temperature,’’ Phys. Rev. D 98 (2018) no.7, 074001doi:10.1103/PhysRevD.98.074001 [arXiv:1806.00835 [hep-ph]].
  •  M. D'Elia, G. Gagliardi and F. Sanfilippo, ``Higher order quark number fluctuations via imaginary chemical potentials in $N_f=2+1$ QCD,’' Phys. Rev. D 95 (2017) no.9, 094503 doi:10.1103/PhysRevD.95.094503 [arXiv:1611.08285 [hep-lat]].
  •  C. Bonati, M. D'Elia, P. Rossi and E. Vicari, ``$\theta$ dependence of 4D $SU(N)$ gauge theories in the large-$N$ limit,’' Phys. Rev. D 94 (2016) no.8, 085017 doi:10.1103/PhysRevD.94.085017 [arXiv:1607.06360 [hep-lat]].

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