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Proceedings of the 18th International conference on Nucleus-Nucleus Collisions QUARK MATTER 2005, 4-9 August, 2005, Budapest, Hungary
Języki publikacji
Abstrakty
We present the preliminary results on direct photon interferometry measurements in Au+Au collisions at square root sNN = 62.4 GeV and 200 GeV using the STAR (solenoidal tracker at RHIC) detector. Photons are reconstructed via e+/e- conversions in STAR Time Projection Chamber (TPC) and energy deposited by photons in STAR Barrel Electromagnetic Calorimeter (BEMC). The two-photon correlations are measured using (1) both photons measured with BEMC; (2) one photon from conversions and the other measured with BEMC. Both the methodologies and the possible constraints in the correlation function measurements are discussed.
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Tom
Strony
55--58
Opis fizyczny
s. 55--58, Bibliogr. 15 poz., rys.
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- Variable Energy Cyclotron Centre, 1/AF Bidhan Nagar, Kolkata 700064, India, Tel.: +91-33-23371230, Fax: +91-33-23346871, ddas@veccal.ernet.in
Bibliografia
- 1. Adams J et al. (STAR Collaboration) (2004)Measurements of transverse energy distributions in Au+Au collisions at sqrt [sNN] = 200 GeV. Phys Rev C 70:054907
- 2. Adams J et al. (STAR Collaboration) (2005) Pion interferometry in Au+Au collisions at sqrt [sNN] = 200 GeV.Phys Rev C 71:044906
- 3. Adler C et al. (STAR Collaboration) (2001) Pion interferometry of sqrt [sNN] = 130 GeV Au+Au collisions at RHIC. Phys Rev Lett 87:082301
- 4. Aggarwal MM et al. (WA98 Collaboration) (2004)Interferometry of direct photons in central Pb+Pb collisions at 158A GeV. Phys Rev Lett 93:022301
- 5. Alam J, Mohanty B, Roy P, Sarkar S, Sinha B (2003) Photon interferometry and the size of the hot zone in relativistic heavy ion collisions. Phys Rev C 67:054902
- 6. Anderson M, Berkovitz J, Betts W et al. (2003) Time projection chamber: a unique tool for studying high multiplicity events at RHIC. Nucl Instrum Methods Phys Res A 499:659?678
- 7. Bass SA, Muller B, Srivastava DK (2004) Photon interferometry of Au+Au collisions at the BNL relativistic heavy-ion collider. Phys Rev Lett 93:162301
- 8. Beddo M, Bielick E, Fornek T et al. (2003) The STAR barrel electromagnetic calorimeter. Nucl Instrum Methods Phys Res A 499:725?739
- 9. Boal D, Gelbke CK, Jennings B (1990) Intensity interferometry in subatomic physics. Rev Mod Phys 62:553?602
- 10. Hanbury-Brown R, Twiss RQ (1956) A test of a new type of stellar interferometer on Sirius. Nature 178:1046?1048
- 11. Heinz U, Jacak BV (1999) Two-particle correlations in relativistic heavy-ion collisions. Ann Rev Nucl Sci 49:529?579
- 12. Peressounko D (2003) Hanbury Brown-Twiss interferometry of direct photons in heavy ion collisions.Phys Rev C 67:014905
- 13. Srivastava DK, Kapusta JI (1993) History of quark-gluon plasma evolution from photon interferometry. Phys Rev C 48:1335?1345
- 14. Srivastava DK, Kapusta JI (1993) Nature of photon correlation function for quark-gluon plasma. Phys Rev C 50:505?508
- 15. Timmermann A, Plumer M, Razumov L, Weiner RM (1994) Photon interferometry of quark-gluon dynamics reexamined. Phys Rev C 50:3060?3063
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0004-0048