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A hint at quark deconfinement in 200 GeV Au+Au data at RHIC

Treść / Zawartość
Identyfikatory
Warianty tytułu
Konferencja
Proceedings of the 2nd Warsaw Meeting on Particle Correlations and Resonances in Heavy Ion Collisions, 15-18 October 2003, Warsaw, Poland
Języki publikacji
EN
Abstrakty
EN
We give the emission function of the axially symmetric Buda-Lund hydro model and present its simultaneous, high quality fits to identified particle spectra, two-particle Bose-Einstein or HBT correlations and charged particle pseudorapidity distributions as measured by BRAHMS and PHENIX in 0 30% central, square root sNN = 200 GeV Au+Au collisions at RHIC. The best fit is achieved when the most central region of the particle emitting volume is superheated to T0 = 200 š 9 MeV greater-than or equal to Tc = 172 š 3 MeV, a 3sigma effect.
Słowa kluczowe
Czasopismo
Rocznik
Strony
49--55
Opis fizyczny
Bibliogr. 34 poz., rys.
Twórcy
autor
  • Department of Atomic Physics, ELTE, Pázmány P. 1/a, H-1117 Budapest, Hungary
autor
  • Research Institute for Particle Physics of the Hungarian Academy of Sciences (MTA KFKI RMKI), H-1525 Budapest 114, P. O. Box 49, Hungary, Tel.: +36 1 392 22 22 x 33 97, Fax: +36 1 392 25 98
autor
  • Department of Physics, University of Lund, S-22362 Lund, Sweden
autor
  • Research Institute for Particle Physics of the Hungarian Academy of Sciences (MTA KFKI RMKI), H-1525 Budapest 114, P. O. Box 49, Hungary, Tel.: +36 1 392 22 22 x 33 97, Fax: +36 1 392 25 98
Bibliografia
  • 1. Adcox K, Adler SS, Ajitanand NN et al. (PHENIX Collaboration) (2002) Centrality dependence of pi+−, K+−,p and anti-p production from s(NN)**(1/2) = 130 GeVAu+Au collisions at RHIC. Phys Rev Lett 88:242301
  • 2. Adcox K, Adler SS, Ajitanand NN et al. (PHENIX Collaboration) (2002) Transverse mass dependence of two-pion correlations in Au+Au collisions at s(NN)**(1/2) = 130 GeV. Phys Rev Lett 88:192302
  • 3. Adler C, Ahammed Z, Allgower C et al. (STAR Collaboration) (2001) Pion interferometry of s(NN)**(1/2) = 130 GeV Au+Au collisions at RHIC. Phys Rev Lett 87:082301
  • 4. Adler SS, Afanasiev S, Aidala C et al. (PHENIX Collaboration) (2004) Bose-Einstein correlations of charged pion pairs in Au+Au collisions at s(NN)**(1/2) = 200 GeV. (nucl-ex/0401003)
  • 5. Adler SS, Afanasiev S, Aidala C et al. (PHENIX Collaboration) (2004) Identified charged particle spectra and yields in Au+Au collisions at s(NN)**(1/2) = 200 GeV. Phys Rev C 69:034910, (nucl-ex/0307022)
  • 6. Back BB, Baker MD, Barton DS et al. (PHOBOS Collaboration) (2001) Charged-particle pseudorapidity density distributions from Au+Au collisions at s(NN)**(1/2) = 130 GeV Phys Rev Lett 87:102303
  • 7. Bearden IG, Beavis D, Besliu C et al. (BRAHMS Collaboration) (2001) Charged particle densities from Au+Au collisions at s(NN)**(1/2) = 130 GeV. Phys Lett B 523:227−233
  • 8. Bearden IG, Beavis D, Besliu C et al. (BRAHMS Collaboration) (2002) Pseudorapidity distributions of charged particles from Au+Au collisions at the maximum RHIC energy. Phys Rev Lett 88:202301
  • 9. Biró TS (2000) Analytic solution for relativistic transverse flow at the softest point. Phys Lett B 474:21−16
  • 10. Biró TS (2000) Generating new solutions for relativistic transverse flow at the softest point. Phys Lett B 487:133−139
  • 11. Broniowski W, Baran A, Florkowski W (2003) Thermal model at RHIC. II: Elliptic flow and HBT radii. AIP Conf Proc 660:185−195
  • 12. Broniowski W, Florkowski W (2001) Explanation of the RHIC p(T)-spectra in a thermal model with expansion. Phys Rev Lett 87:272302
  • 13. Chapman S, Scotto P, Heinz U (1995) Model independent features of the two-particle correlation function. Heavy Ion Phys 1:1−31, (hep-ph/9409349)
  • 14. Csanád M, Csörgõ T, Lörstad B (2003) Buda-Lund hydro model for ellipsoidally symmetric fireballs and the elliptic flow at RHIC. (nucl-th/0310040)
  • 15. Csanád M, Csörgõ T, Lörstad B, Ster A (2004) An indication for deconfinement in Au+Au collisions at RHIC. Acta Phys Pol B 35:191−196, (nucl-th/0311102)
  • 16. Csörgõ T (1998) Simple analytic solution of fireball hydrodynamics. (nucl-th/9809011) 17. Csörgõ T (2001) Simple solutions of fireball hydrodynamics for selfsimilar, ellipsoidal flows. (hep-ph/0111139)
  • 18. Csörgõ T (2002) Particle interferometry from 40 MeV to 40 TeV. Heavy Ion Phys 15:1−80, (hep-ph/0001233)
  • 19. Csörgõ T, Csernai L, Hama Y, Kodama T (2003) Simple solutions of relativistic hydrodynamics for systems with ellipsoidal symmetry. (nucl-th/0306004)
  • 20. Csörgõ T, Grassi F, Hama Y, Kodama T (2003) Simple solutions of relativistic hydrodynamics for longitudinally and cylindrically expanding systems. Phys Lett B 565:107−115
  • 21. Csörgõ T, Lörstad B (1995) Bose-Einstein correlations for expanding finite systems. Nucl Phys A 590:465c−468c
  • 22. Csörgõ T, Lörstad B (1996) Bose-Einstein correlations for three-dimensionally expanding, cylindrically symmetric, finite systems. Phys Rev C 54:1390−1403
  • 23. Csörgõ T, Lörstad B, Zimányi J (1996) Bose-Einstein correlations for systems with large halo. Z Phys C 71:491−497
  • 24. Csörgõ T, Ster A (2003) The reconstructed final state of Au+Au collisions from PHENIX and STAR data at s(NN)**(1/2) = 130 A GeV: Indication for quark deconfinement at RHIC. Heavy Ion Phys 17:295−312, (nucl-th/0207016) A hint at quark deconfinement in 200 GeV Au+Au data at RHIC S55 25. Csörgõ T, Zimányi J (2003) Inflation of fireballs, the gluon wind and the homogeneity of the HBT radii at RHIC. Heavy Ion Phys 17:281−293, (nucl-th/0206051)
  • 26. Florkowski W, Broniowski W (2003) Thermal model for RHIC. I: Particle ratios and spectra. AIP Conf Proc 660:177−184
  • 27. Fodor Z, Katz SD (2002) Lattice determination of the critical point of QCD at finite T and mu. JHEP 0203:014, (hep-lat/0106002)
  • 28. Hirano T, Tsuda K (2003) Collective flow and HBT radii from a full 3D hydrodynamic model with early chemical freeze out. Nucl Phys A 715:821−824
  • 29. http://www.kfki.hu/~csorgo/budalund/30. Humanic TJ (2003) Comparison of hadronic rescattering calculations of elliptic flow and HBT with measurements from RHIC. Nucl Phys A 715:641−644
  • 31. Lin ZW, Ko CM, Pal S (2002) Partonic effects on pion interferometry at RHIC. Phys Rev Lett 89:152301
  • 32. Retière F (2004) Space-time analysis of reaction at RHIC. J Phys G 30:S335−S344
  • 33. Retière F, Lisa MA (2003) Observable implications of geometrical and dynamical aspects of freeze-out in heavy ion collisions. (nucl-th/0312024)
  • 34. Ster A, Csörgõ T, Beier J (1999) On source parameters from particle correlations and spectra. Heavy Ion Phys 10:85−112, (hep-ph/9810341)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0005-0089
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