Open Access
Issue
EPJ Web Conf.
Volume 364, 2026
XXXI International Conference on Ultra-Relativistic Nucleus-Nucleus Collisions “Quark Matter 2025”
Article Number 01009
Number of page(s) 9
Section Plenary Sessions
DOI https://doi.org/10.1051/epjconf/202636401009
Published online 17 April 2026
  1. D.H. Rischke, Prog. Part. Nucl. Phys. 52 (2004), 197–296 doi:10.1016/j.ppnp.2003.09.002 [arXiv:nucl-th/0305030 [nucl-th]]. [Google Scholar]
  2. S. Acharya et al. [ALICE], Phys. Lett. B 790 (2019), 89–101 doi:10.1016/j.physletb.2018.11.067 [arXiv:1805.04387 [nucl-ex]]. [Google Scholar]
  3. S. Acharya et al. [ALICE], Phys. Rev. Lett. 123 (2019) no.19, 192301 doi:10.1103/PhysRevLett.123.192301 [arXiv:1907.03169 [nucl-ex]]. [Google Scholar]
  4. A. Bazavov et al. [HotQCD], Phys. Rev. D 90 (2014), 094503 doi:10.1103/PhysRevD.90.094503 [arXiv:1407.6387 [hep-lat]]. [Google Scholar]
  5. S. Borsanyi, Z. Fodor, C. Hoelbling, S.D. Katz, S. Krieg and K.K. Szabo, Phys. Lett. B 730 (2014), 99–104 doi:10.1016/j.physletb.2014.01.007 [arXiv:1309.5258 [hep-lat]]. [Google Scholar]
  6. S. Acharya et al. [ALICE], JHEP 10 (2020), 141 doi:10.1007/JHEP10(2020)141 [arXiv:2005.14518 [nucl-ex]]. [Google Scholar]
  7. V. Chekhovsky et al. [CMS], [arXiv:2509.08626 [nucl-ex]]. [Google Scholar]
  8. P. Braun-Munzinger and J. Wambach, Rev. Mod. Phys. 81 (2009), 1031–1050 doi:10.1103/RevModPhys.81.1031 [arXiv:0801.4256 [hep-ph]]. [Google Scholar]
  9. J.P. Lansberg, Phys. Rept. 889 (2020), 1–106 doi:10.1016/j.physrep.2020.08.007 [arXiv:1903.09185 [hep-ph]]. [Google Scholar]
  10. A. Andronic, P. Braun-Munzinger, M.K. Köhler, K. Redlich and J. Stachel, Phys. Lett. B 797 (2019), 134836 doi:10.1016/j.physletb.2019.134836 [arXiv:1901.09200 [nucl-th]]. [Google Scholar]
  11. S. Acharya et al. [ALICE], JHEP 06 (2023), 147 doi:10.1007/JHEP06(2023)147 [arXiv:2204.10253 [nucl-ex]]. [Google Scholar]
  12. G. Aad et al. [ATLAS], Phys. Rev. C 107 (2023) no.5, 054912 doi:10.1103/PhysRevC.107.054912 [arXiv:2205.03042 [nucl-ex]]. [Google Scholar]
  13. [CMS], CMS-PAS-HIN-22-003. [Google Scholar]
  14. A. Tumasyan et al. [CMS], Phys. Lett. B 825 (2022), 136842 doi:10.1016/j.physletb.2021.136842 [arXiv:2106.13235 [hep-ex]]. [Google Scholar]
  15. K. Zhou, N. Xu, Z. Xu and P. Zhuang, Phys. Rev. C 89 (2014) no.5, 054911 doi:10.1103/PhysRevC.89.054911 [arXiv:1401.5845 [nucl-th]]. [Google Scholar]
  16. X. Zhao and R. Rapp, Phys. Lett. B 664 (2008), 253–257 doi:10.1016/j.physletb.2008.03.068 [arXiv:0712.2407 [hep-ph]]. [Google Scholar]
  17. K.O. Schweda, [arXiv:1402.1370 [nucl-ex]]. [Google Scholar]
  18. V. Chekhovsky et al. [CMS], Phys. Rev. Lett. 135 (2025) no.9, 092301 doi:10.1103/c9wp-5tq3 [arXiv:2503.02139 [nucl-ex]]. [Google Scholar]
  19. R. Aaij et al. [LHCb], Eur. Phys. J. C 75 (2015) no.7, 311 doi:10.1140/epjc/s10052-015-3502-x [arXiv:1409.3612 [hep-ex]]. [Google Scholar]
  20. R. Aaij et al. [LHCb], Phys. Lett. B 718 (2012), 431–440 doi:10.1016/j.physletb.2012.10.068 [arXiv:1204.1462 [hep-ex]]. [Google Scholar]
  21. A. Adare et al. [PHENIX], Phys. Rev. Lett. 111 (2013) no.20, 202301 doi:10.1103/PhysRevLett.111.202301 [arXiv:1305.5516 [nucl-ex]]. [Google Scholar]
  22. R. Aaij et al. [LHCb], JHEP 05 (2024), 243 doi:10.1007/JHEP05(2024)243 [arXiv:2312.15201 [hep-ex]]. [Google Scholar]
  23. R. Aaij et al. [LHCb], JHEP 07 (2025), 235 doi:10.1007/JHEP07(2025)235 [arXiv:2411.05669 [nucl-ex]]. [Google Scholar]
  24. R. Aaij et al. [LHCb], Phys. Rev. C 103 (2021), 064905 doi:10.1103/PhysRevC.103.064905 [arXiv:2103.07349 [hep-ex]]. [Google Scholar]
  25. F. Abe et al. [CDF], Phys. Rev. Lett. 79 (1997), 578–583 doi:10.1103/PhysRevLett.79.578 [Google Scholar]
  26. S. Acharya et al. [ALICE], Phys. Rev. Lett. 132 (2024) no.4, 042301 doi:10.1103/PhysRevLett.132.042301 [arXiv:2210.08893 [nucl-ex]]. [CrossRef] [PubMed] [Google Scholar]
  27. S. Chatrchyan et al. [CMS], Eur. Phys. J. C 72 (2012), 2251 doi:10.1140/epjc/s10052-012-2251-3 [arXiv:1210.0875 [hep-ex]]. [Google Scholar]
  28. A. Rothkopf, Phys. Rept. 858 (2020), 1–117 doi:10.1016/j.physrep.2020.02.006 [arXiv:1912.02253 [hep-ph]]. [CrossRef] [Google Scholar]
  29. R. Aaij et al. [LHCb], Eur. Phys. J. C 84 (2024) no.12, 1274 doi:10.1140/epjc/s10052-024-13478-y [arXiv:2407.14261 [hep-ex]]. [Google Scholar]
  30. R. Aaij et al. [LHCb], Eur. Phys. J. C 80 (2020) no.3, 191 doi:10.1140/epjc/s10052-020-7733-0 [arXiv:1911.03326 [hep-ex]]. [Google Scholar]
  31. R. Aaij et al. [LHCb], Phys. Rev. Lett. 132 (2024) no.10, 102302 doi:10.1103/PhysRevLett.132.102302 [arXiv:2311.01562 [hep-ex]]. [Google Scholar]
  32. [CMS], CMS-PAS-HIN-22-003. [Google Scholar]
  33. S. Acharya et al. [ALICE], Nucl. Phys. B 1011 (2025), 116786 doi:10.1016/j.nuclphysb.2024.116786 [arXiv:2209.04241 [nucl-ex]]. [Google Scholar]
  34. R. Aaij et al. [LHCb], JHEP 05 (2025), 011 doi:10.1007/JHEP05(2025)011 [arXiv:2501.12611 [hep-ex]]. [Google Scholar]
  35. A.M. Sirunyan et al. [CMS], JHEP 11 (2020), 001 doi:10.1007/JHEP11(2020)001 [arXiv:2007.04277 [hep-ex]]. [Google Scholar]
  36. [ATLAS], ATLAS-CONF-2022-023. [Google Scholar]
  37. P. Braun-Munzinger and J. Stachel, Phys. Lett. B 490 (2000), 196–202 doi:10.1016/S0370-2693(00)00991-6 [arXiv:nucl-th/0007059 [nucl-th]]. [Google Scholar]
  38. R.L. Thews, M. Schroedter and J. Rafelski, Phys. Rev. C 63 (2001), 054905 doi:10.1103/PhysRevC.63.054905 [arXiv:hep-ph/0007323 [hep-ph]]. [CrossRef] [Google Scholar]
  39. S. Acharya et al. [ALICE], Phys. Lett. B 849 (2024), 138451 doi:10.1016/j.physletb.2024.138451 [arXiv:2303.13361 [nucl-ex]]. [CrossRef] [Google Scholar]
  40. S. Acharya et al. [ALICE], JHEP 02 (2024), 066 doi:10.1007/JHEP02(2024)066 [arXiv:2308.16125 [nucl-ex]]. [Google Scholar]
  41. A. Andronic and R. Arnaldi, [arXiv:2501.08290 [nucl-ex]]. [Google Scholar]
  42. L. Apolinärio, Y.J. Lee and M. Winn, Prog. Part. Nucl. Phys. 127 (2022), 103990 doi:10.1016/j.ppnp.2022.103990 [arXiv:2203.16352 [hep-ph]]. [Google Scholar]
  43. S. Acharya et al. [ALICE], Phys. Lett. B 849 (2024), 138451 doi:10.1016/j.physletb.2024.138451 [arXiv:2303.13361 [nucl-ex]]. [CrossRef] [Google Scholar]
  44. R. Aaij et al. [LHCb], Eur. Phys. J. C 83 (2023) no.7, 658 doi:10.1140/epjc/s10052-023-11674-w [arXiv:2211.11652 [hep-ex]]. [Google Scholar]
  45. S. Acharya et al. [ALICE], JHEP 10 (2023), 119 doi:10.1007/JHEP10(2023)119 [arXiv:2305.19060 [nucl-ex]]. [Google Scholar]
  46. R. Aaij et al. [LHCb], Eur. Phys. J. C 85 (2025) no.5, 562 doi:10.1140/epjc/s10052-025-13852-4 [arXiv:2410.18018 [hep-ex]]. [Google Scholar]
  47. A. Tumasyan et al. [CMS], Phys. Rev. Lett. 133 (2024) no.2, 022302 doi:10.1103/PhysRevLett.133.022302 [arXiv:2303.17026 [hep-ex]]. [Google Scholar]
  48. J.F. Grosse-Oetringhaus and U.A. Wiedemann, [arXiv:2407.07484 [hep-ex]]. [Google Scholar]
  49. E.G. Ferreiro, Phys. Lett. B 749 (2015), 98–103 doi:10.1016/j.physletb.2015.07.066 [arXiv:1411.0549 [hep-ph]]. [Google Scholar]
  50. Y.Q. Ma, R. Venugopalan, K. Watanabe and H.F. Zhang, Phys. Rev. C 97 (2018) no.1, 014909 doi:10.1103/PhysRevC.97.014909 [arXiv:1707.07266 [hep-ph]]. [Google Scholar]
  51. R. Aaij et al. [LHCb], JHEP 04 (2024), 111 doi:10.1007/JHEP04(2024)111 [arXiv:2401.11342 [hep-ex]]. [Google Scholar]
  52. [CMS], CMS-PAS-HIN-22-003. [Google Scholar]
  53. G. Aad et al. [ATLAS], [arXiv:2509.04135 [nucl-ex]]. [Google Scholar]
  54. [STAR], [arXiv:2509.12842 [nucl-ex]]. [Google Scholar]
  55. R. Aaij et al. [LHCb], JHEP 05 (2024), 243 doi:10.1007/JHEP05(2024)243 [arXiv:2312.15201 [hep-ex]]. [Google Scholar]
  56. S. Acharya et al. [ALICE], JHEP 06 (2023), 147 doi:10.1007/JHEP06(2023)147 [arXiv:2204.10253 [nucl-ex]]. [Google Scholar]
  57. A.M. Sirunyan et al. [CMS], JHEP 11 (2020), 001 doi:10.1007/JHEP11(2020)001 [arXiv:2007.04277 [hep-ex]]. [Google Scholar]
  58. R. Aaij et al. [LHCb], JHEP 05 (2025), 011 doi:10.1007/JHEP05(2025)011 [arXiv:2501.12611 [hep-ex]]. [Google Scholar]
  59. S. Acharya et al. [ALICE], Nucl. Phys. B 1011 (2025), 116786 doi:10.1016/j.nuclphysb.2024.116786 [arXiv:2209.04241 [nucl-ex]]. [Google Scholar]
  60. B. Abelev et al. [ALICE], J. Phys. G 41 (2014), 087001 doi:10.1088/0954-3899/41/8/087001 [Google Scholar]
  61. S. Acharya et al. [ALICE], Phys. Rev. Lett. 132 (2024) no.4, 042301 doi:10.1103/PhysRevLett.132.042301 [arXiv:2210.08893 [nucl-ex]]. [CrossRef] [PubMed] [Google Scholar]
  62. R. Aaij et al. [LHCb], JHEP 07 (2025), 235 doi:10.1007/JHEP07(2025)235 [arXiv:2411.05669 [nucl-ex]]. [Google Scholar]
  63. A. Rothkopf, Phys. Rept. 858 (2020), 1–117 doi:10.1016/j.physrep.2020.02.006 [arXiv:1912.02253 [hep-ph]]. [CrossRef] [Google Scholar]
  64. G. Aad et al. [ATLAS], Phys. Rev. C 107 (2023) no.5, 054912 doi:10.1103/PhysRevC.107.054912 [arXiv:2205.03042 [nucl-ex]]. [Google Scholar]
  65. S. Acharya et al. [ALICE], Phys. Lett. B 790 (2019), 89–101 doi:10.1016/j.physletb.2018.11.067 [arXiv:1805.04387 [nucl-ex]]. [Google Scholar]
  66. A.M. Sirunyan et al. [CMS], Phys. Lett. B 819 (2021), 136385 doi:10.1016/j.physletb.2021.136385 [arXiv:2006.07707 [hep-ex]]. [CrossRef] [Google Scholar]
  67. R. Aaij et al. [LHCb], Phys. Rev. D 99 (2019) no.5, 052011 doi:10.1103/PhysRevD.99.052011 [arXiv:1902.05599 [hep-ex]]. [Google Scholar]
  68. R. Aaij et al. [LHCb], Phys. Lett. B 774 (2017), 159–178 doi:10.1016/j.physletb.2017.09.058 [arXiv:1706.07122 [hep-ex]]. [Google Scholar]
  69. K. Reygers, A. Schmah, A. Berdnikova and X. Sun, Phys. Rev. C 101 (2020) no.6, 064905 doi:10.1103/PhysRevC.101.064905 [arXiv:1910.14618 [hep-ph]]. [Google Scholar]
  70. S. Acharya et al. [ALICE], JHEP 12 (2019), 092 doi:10.1007/JHEP12(2019)092 [arXiv:1906.03425 [nucl-ex]]. [Google Scholar]
  71. R. Aaij et al. [LHCb], JHEP 10 (2017), 090 doi:10.1007/JHEP10(2017)090 [arXiv:1707.02750 [hep-ex]]. [Google Scholar]
  72. R. Aaij et al. [LHCb], [arXiv:2506.08624 [nucl-ex]]. [Google Scholar]
  73. A. Tumasyan et al. [CMS], Phys. Rev. Lett. 131 (2023) no.26, 262301 doi:10.1103/PhysRevLett.131.262301 [arXiv:2303.16984 [nucl-ex]]. [Google Scholar]
  74. [CMS], CMS-PAS-HIN-24-003. [Google Scholar]

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