To access the full text documents, please follow this link: http://hdl.handle.net/2445/12215

Initial state of ultrarelativistic heavy ion collision
Magas, Volodymyr; Csernai, L. P.; Strottman, D.
Universitat de Barcelona
A model for energy, pressure, and flow velocity distributions at the beginning of ultrarelativistic heavy ion collisions is presented, which can be used as an initial condition for hydrodynamic calculations. Our model takes into account baryon recoil for both target and projectile, arising from the acceleration of partons in an effective field F mu nu produced in the collision. The typical field strength (string tension) for RHIC energies is about 512 GeV/fm, which allows us to talk about string ropes. The results show that a quark-gluon plasma forms a tilted disk, such that the direction of the largest pressure gradient stays in the reaction plane, but deviates from both the beam and the usual transverse flow directions. Such initial conditions may lead to the creation of antiflow or third flow component [L. P. Csernai and D. Rhrich, Phys. Rev. Lett. B 458, 454 (1999)].
-Reaccions nuclears
-Col·lisions d'ions pesats
-Nuclear reactions
-Heavy ion collisions
(c) The American Physical Society, 2001
Article
Article - Published version
The American Physical Society
         

Show full item record

Related documents

Other documents of the same author

Magas, Volodymyr; Gordillo Solana, Joel; Strottman, D.; Xie, Y. L.; Csernai, L. P.
Cheng, Yun; Csernai, L. P.; Magas, Volodymyr; Schlei, B. R.; Strottman, D.
Magas, Volodymyr; Gordillo Solana, Joel; Strottman, D.; Xie, Y. L.; Csernai, L. P.
Anderlik, Cs.; Lázár, Zs. I.; Magas, Volodymyr; Csernai, L. P.; Stöcker, Horst; Greiner, Walter, 1935-
 

Coordination

 

Supporters