4.8 Article

Directed, Elliptic, and Higher Order Flow Harmonics of Protons, Deuterons, and Tritons in Au plus Au Collisions at √sNN=2.4 GeV

期刊

PHYSICAL REVIEW LETTERS
卷 125, 期 26, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.125.262301

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资金

  1. SIP JUC Cracow, Cracow (Poland)
  2. National Science Center [2016/23/P/ST2/04066 POLONEZ, 2017/25/N/ST2/00580, 2017/26/M/ST2/00600]
  3. TU Darmstadt, Darmstadt (Germany)
  4. GSI FE
  5. HIC for FAIR (LOEWE)
  6. Goethe-University, Frankfurt (Germany)
  7. ExtreMe Matter Institute EMMI at GSI Darmstadt
  8. TU Munchen, Garching (Germany)
  9. MLL Munchen
  10. DFG [EClust 153, FAB898/2-2, GRK 2128, CRC-TR 211]
  11. GSI [TMLRG1316F]
  12. BMBF [05P15WOFCA]
  13. Russian Foundation for Basic Research (RFBR) [18-0240086]
  14. National Research Nuclear University MEPhI [02.a03.21.0005]
  15. Ministry of Science and Higher Education of the Russian Federation [0723-2020-0041]
  16. JLU Giessen, Giessen (Germany)
  17. IPN Orsay, Orsay Cedex (France)
  18. CNRS/IN2P3
  19. MSMT [LM2015049, OP VVV CZ.02.1.01/0.0/0.0/16 013/0001677, LTT17003]
  20. NPI CAS, Rez, Rez (Czech Republic)
  21. [VH-NG-823]
  22. [BMBF:05P18RDFC1]
  23. [BMBF:05P12RGGHM]
  24. [BMBF: 06FY9100I]
  25. [BMBF:05P19RFFCA]
  26. [SFB 1258]

向作者/读者索取更多资源

Flow coefficients v(n) of the orders n = 1-6 are measured with the High-Acceptance DiElectron Spectrometer (HADES) at GSI for protons, deuterons, and tritons as a function of centrality, transverse momentum, and rapidity in Au + Au collisions at root s(NN) = 2.4 GeV. Combining the information from the flow coefficients of all orders allows us to construct for the first time, at collision energies of a few GeV, a multidifferential picture of the angular emission pattern of these particles. It reflects the complicated interplay between the effect of the central fireball pressure on the emission of particles and their subsequent interaction with spectator matter. The high precision information on higher order flow coefficients is a major step forward in constraining the equation of state of dense baryonic matter.

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