Experimental and Theoretical Challenges in the Search for the Quark Gluon Plasma: The STAR Collaboration’s Critical Assessment of the Evidence from RHIC Collisions

We review the most important experimental results from the first three years of nucleus-nucleus collision studies at RHIC, with emphasis on results from the STAR experiment, and we assess their interpretation and comparison to theory. The theory-experiment comparison suggests that central Au+Au collisions at RHIC produce dense, rapidly thermalizing matter characterized by: (1) initial energy densities above the critical values predicted by lattice QCD for establishment of a Quark-Gluon Plasma (QGP); (2) nearly ideal fluid flow, marked by constituent interactions of very short mean free path, established most probably at a stage preceding hadron formation; and (3) opacity to jets. Many of the observations are consistent with models incorporating QGP formation in the early collision stages, and have not found ready explanation in a hadronic framework. However, the measurements themselves do not yet establish unequivocal evidence for a transition to this new form of matter. The theoretical treatment of the collision evolution, despite impressive successes, invokes a suite of distinct models, degrees of freedom and assumptions of as yet unknown quantitative consequence. We pose a set of important open questions, and suggest additional measurements, at least some of which should be addressed in order to establish a compelling basis to conclude definitively that thermalized, deconfined quark-gluon matter has been produced at RHIC.

H. M. Spinka | I. Sakrejda | N. Schmitz | F. Retiere | D. G. Underwood | J. Schambach | G. Van Buren | R. Raniwala | S. Raniwala | I. Savin | K. E. Shestermanov | J. Takahashi | V. I. Yurevich | S. V. Razin | A. Ridiger | R. P. Scharenberg | E. Shahaliev | J. Sowinski | A. Stolpovsky | A. A. P. Suaide | E. Sugarbaker | T. J. M. Symons | T. Ullrich | I. M. Vasilevski | R. Zoulkarneev | A. N. Zubarev | R. L. Ray | B. Surrow | M. Strikhanov | M. Tokarev | P. Seyboth | S. Vokal | F. Simon | M. Sarsour | E. Sichtermann | J. Thomas | Z. Zhang | H. Spinka | J. Reid | J. Roberts | D. Underwood | M. Shao | R. Scharenberg | F. Simon | H. Ritter | R. Ray | S. Razin | F. Retière | A. Ridiger | J. Romero | I. Sakrejda | I. Savin | J. Schambach | N. Schmitz | J. Seger | P. Seyboth | E. Shahaliev | K. Shestermanov | J. Sowinski | B. Srivastava | R. Stock | A. Stolpovsky | M. Strikhanov | A. Suaide | E. Sugarbaker | C. Suire | M. Šumbera | T. Symons | J. Takahashi | S. Trentalange | M. Tokarev | T. Ullrich | G. Buren | I. Vasilevski | A. Vasiliev | G. Westfall | V. Yurevich | I. Zborovský | H. Zhang | R. Zoulkarneev | A. Zubarev | M. Sharma | R. Raniwala | S. Raniwala | R. Sahoo | R. Varma | R. Vernet | Ahmed M. Hamed | O. Rogachevskiy | L. Ruan | W. Shen | E. Sichtermann | P. Sorensen | B. Surrow | S. Vokál | M. Sarsour | H. Zhang | H. G. Ritter | J. B. Roberts | J. L. Romero | A. Rose | W. Shao | P. Sorensen | J. Speltz | R. Stock | M. Sumbera | A. Tai | J. H. Thomas | S. Trentalange | G. D. Westfall | J. Reinnarth | A. Rose | M. Russcher | P. S. Sazhin | S. Shimanskiy | J. Speltz | A. Stadnik | A. Tai | A. Wetzler | Y. Zoulkarneeva | ah | W. Shao | A. M. Molen | M. Shao | M. Sharma | R. Varma | A. N. Vasiliev | C. Suire | R. Vernet | B. Srivastava | J. G. Reid | J. Seger | J. Reinnarth | O. V. Rogachevskiy | L. Ruan | M. Russcher | R. Sahoo | W. Q. Shen | S. S. Shimanskiy | A. Stadnik | A. M. Vander Molen | A. Wetzler | I. Zborovsky | Z. P. Zhang | Y. Zoulkarneeva | J. Reid | J. Takahashi | M. Sharma

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