Open Access
| Issue |
EPJ Web Conf.
Volume 339, 2025
12th International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear Collisions (Hard Probes 2024)
|
|
|---|---|---|
| Article Number | 01016 | |
| Number of page(s) | 8 | |
| Section | Plenary Talk | |
| DOI | https://doi.org/10.1051/epjconf/202533901016 | |
| Published online | 05 November 2025 | |
- M. Arslandok et al., Hot QCD White Paper (2023), 2303.17254. [Google Scholar]
- A. Sorensen et al., Dense nuclear matter equation of state from heavy-ion collisions, Prog. Part. Nucl. Phys. 134, 104080 (2024), 2301.13253. 10.1016/j.ppnp.2023.104080 [CrossRef] [Google Scholar]
- L. Du, A. Sorensen, M. Stephanov, The QCD phase diagram and Beam Energy Scan physics: a theory overview, Int. J. Mod. Phys. E, 33, 2430008 (2024), 2402.10183. 10.1142/S021830132430008X [Google Scholar]
- J.F. Paquet, Electromagnetic probes in heavy-ion collisions: progress and open questions, PoS HardProbes2023, 009 (2024), 2307.09967. 10.22323/1.438.0009 [Google Scholar]
- G. Vujanovic, Electromagnetic Probes of the Quantum Chromodynamical Plasma, in 14th International Conference on Nucleus Nucleus Collisions (2024), 2411.19868 [Google Scholar]
- C. Gale, Electromagnetic Radiation from High-Energy Nuclear Collisions (2025), 2502.13938 [Google Scholar]
- F. Geurts, R.A. Tripolt, Electromagnetic probes: Theory and experiment, Prog. Part. Nucl. Phys., 128, 104004 (2023), 2210.01622. 10.1016/j.ppnp.2022.104004 [Google Scholar]
- A. Sakai, M. Harada, C. Nonaka, C. Sasaki, K. Shigaki, S. Yano, Probing the QCD phase transition with chiral mixing in dilepton production (2023), 2308.03305. [Google Scholar]
- R. Rapp, Electric conductivity of QCD matter and dilepton spectra in heavy-ion collisions, Phys. Rev. C, 110, 054909 (2024), 2406.14656. 10.1103/PhysRevC.110.054909 [Google Scholar]
- J. Atchison, Y. Han, F. Geurts, Electric conductivity of hot and dense nuclear matter, Phys. Lett. B, 858, 139024 (2024), 2408.10176. 10.1016/j.physletb.2024.139024 [Google Scholar]
- W.H. Zhou, C.M. Ko, K.J. Sun, Effects of chiral symmetry restoration on dilepton production in heavy ion collisions (2024), 2412.18895. [Google Scholar]
- R. Rapp, H. van Hees, Thermal Dileptons as Fireball Thermometer and Chronometer, Phys. Lett. B, 753, 586 (2016), 1411.4612. 10.1016/j.physletb.2015.12.065 [CrossRef] [Google Scholar]
- J. Adamczewski-Musch et al. (HADES), Probing dense baryon-rich matter with virtual photons, Nature Phys. 15, 1040 (2019). 10.1038/s41567-019-0583-8 [CrossRef] [Google Scholar]
- Temperature Measurement of Quark-Gluon Plasma at Different Stages (2024), 2402.01998. [Google Scholar]
- I. Ghisoiu, M. Laine, Interpolation of hard and soft dilepton rates, JHEP, 10, 083 (2014), 1407.7955. 10.1007/jhep10(2014)083 [CrossRef] [Google Scholar]
- J. Churchill, L. Du, C. Gale, G. Jackson, S. Jeon, Virtual Photons Shed Light on the Early Temperature of Dense QCD Matter, Phys. Rev. Lett., 132, 172301 (2024), 2311.06951. 10.1103/PhysRevLett.132.172301 [Google Scholar]
- J. Churchill, L. Du, C. Gale, G. Jackson, S. Jeon, Dilepton production at next-to-leading order and intermediate invariant-mass observables, Phys. Rev. C, 109, 044915 (2024), 2311.06675. 10.1103/PhysRevC.109.044915 [Google Scholar]
- S. Ali, D. Bala, A. Francis, G. Jackson, O. Kaczmarek, J. Turnwald, T. Ueding, N. Wink (HotQCD), Lattice QCD estimates of thermal photon production from the QGP, Phys. Rev. D 110, 054518 (2024), 2403.11647. 10.1103/PhysRevD.110.054518 [Google Scholar]
- J. Ghiglieri, J. Hong, A. Kurkela, E. Lu, G.D. Moore, D. Teaney, Next-to-leading order thermal photon production in a weakly coupled quark-gluon plasma, JHEP, 05, 010 (2013), 1302.5 9 70. 10.1007/jhep05(2013)010 [Google Scholar]
- M. Laine, NLO thermal dilepton rate at non-zero momentum, JHEP, 11, 120 (2013), 1310.0164. 10.1007/JHEP11(2013)120 [Google Scholar]
- H. Gao, et al. (2024), In these proceedings. [Google Scholar]
- J.A. Sun, L. Yan, The effect of weak magnetic photon emission from quark-gluon plasma, Phys. Lett. B, 858, 139046 (2024), 2302.07696. 10.1016/j.physletb.2024.139046 [Google Scholar]
- O. Massen, G. Nijs, M. Sas, W. van der Schee, R. Snellings, Effective temperatures of the QGP from thermal photon and dilepton production (2024), 2412.09671. [Google Scholar]
- M. Coquet, X. Du, J.Y. Ollitrault, S. Schlichting, M. Winn, Intermediate mass dileptons as pre-equilibrium probes in heavy ion collisions, Phys. Lett. B, 821, 136626 (2021), 2104.07622. 10.1016/j.physletb.2021.136626 [CrossRef] [Google Scholar]
- O. Garcia-Montero, A. Mazeliauskas, P. Plaschke, S. Schlichting, Pre-equilibrium photons from the early stages of heavy-ion collisions, JHEP, 03, 053 (2024), 2308.09747. 10.1007/jhep03(2024)053 [Google Scholar]
- X.Y. Wu, L. Du, C. Gale, S. Jeon, Probing the equilibration of the QCD matter created in heavy-ion collisions with dileptons, Phys. Rev. C, 110, 054904 (2024), 2407.04156. 10.1103/PhysRevC.110.054904 [Google Scholar]
- C. Gale, J.F. Paquet, B. Schenke, C. Shen, Multimessenger heavy-ion collision physics, Phys. Rev. C, 105, 014909 (2022), 2106.11216. 10.1103/PhysRevC.105.014909 [CrossRef] [Google Scholar]
- M. Coquet, M. Winn, X. Du, J.Y. Ollitrault, S. Schlichting, Dilepton Polarization as a Signature of Plasma Anisotropy, Phys. Rev. Lett., 132, 232301 (2024), 2309.00555. 10.1103/PhysRevLett.132.232301 [Google Scholar]
- C. Shen, U.W. Heinz, J.F. Paquet, C. Gale, Thermal photons as a quark-gluon plasma thermometer reexamined, Phys. Rev. C, 89, 044910 (2014), 1308.2440. 10.1103/Phys- RevC.89.044910 [CrossRef] [Google Scholar]
- L. Du, C. Shen, S. Jeon, C. Gale, Probing initial baryon stopping and equation of state with rapidity-dependent directed flow of identified particles, Phys. Rev. C, 108, L041901 (2023), 2211.16408. 10.1103/PhysRevC.108.L041901 [CrossRef] [Google Scholar]
- L. Du, H. Gao, S. Jeon, C. Gale, Rapidity scan with multistage hydrodynamic and statistical thermal models, Phys. Rev. C, 109, 014907 (2024), 2302.13852. 10.1103/Phys- RevC.109.014907 [Google Scholar]
- L. Du, Bulk medium properties of heavy-ion collisions from the beam energy scan with a multistage hydrodynamic model, Phys. Rev. C, 110, 014904 (2024), 2401.00596. 10.1103/PhysRevC.110.014904 [Google Scholar]
- L. Du, Multimessenger study of baryon-charged QCD matter in heavy-ion collisions, Phys. Lett. B, 861, 139270 (2025), 2408.08501. 10.1016/j.physletb.2025.139270 [Google Scholar]
- D. Everett et al. (JETSCAPE), Multisystem Bayesian constraints on the transport coefficients of QCD matter, Phys. Rev. C 103, 054904 (2021), 2011.01430. 10.1103/Phys- RevC.103.054904 [CrossRef] [Google Scholar]
- R. Ehlers et al. (JETSCAPE), Bayesian Inference analysis of jet quenching using inclusive jet and hadron suppression measurements (2024), 2408.08247. [Google Scholar]
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