Effective string rope model for the initial stages of ultra-relativistic heavy ion collisions

被引:61
作者
Magas, VK
Csernai, LP
Strottman, D
机构
[1] Inst Super Tecn, Ctr Phys Fundamental Interact, Dept Phys, P-1049001 Lisbon, Portugal
[2] Univ Bergen, Dept Phys, Sect Theoret & Computat Phys, N-5007 Bergen, Norway
[3] KFKI, Res Inst Particle & Nucl Phys, H-1525 Budapest, Hungary
[4] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87454 USA
关键词
ultra-relativistic heavy ion collisions; initial state; string ropes; RHIC; third flow;
D O I
10.1016/S0375-9474(02)01073-4
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Different approaches to describe initial stages of relativistic heavy ion collisions are discussed qualitatively and quantitatively. An effective string rope model is presented for heavy ion collisions at RHIC energies. Our model takes into account baryon recoil for both target and projectile, arising from the acceleration of partons in an effective field, F-munu, produced in the collision. The typical field strength (string tension) for RHIC energies is about 5-12 GeV/fm, what allows us to talk about "string ropes". The results show that a QGP 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. The produced initial state can be used as an initial condition for further hydrodynamical calculations. Such initial conditions lead to the creation of third flow component. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:167 / 204
页数:38
相关论文
共 97 条
[1]   Elliptic flow in Au plus Au collisions at √sNN=130 GeV [J].
Ackermann, KH ;
Adams, N ;
Adler, C ;
Ahammed, Z ;
Ahmad, S ;
Allgower, C ;
Amsbaugh, J ;
Anderson, M ;
Anderssen, E ;
Arnesen, H ;
Arnold, L ;
Averichev, GS ;
Baldwin, A ;
Balewski, J ;
Barannikova, O ;
Barnby, LS ;
Baudot, J ;
Beddo, M ;
Bekele, S ;
Belaga, VV ;
Bellwied, R ;
Bennett, S ;
Bercovitz, J ;
Berger, J ;
Betts, W ;
Bichsel, H ;
Bieser, F ;
Bland, LC ;
Bloomer, M ;
Blyth, CO ;
Boehm, J ;
Bonner, BE ;
Bonnet, D ;
Bossingham, R ;
Botlo, M ;
Boucham, A ;
Bouillo, N ;
Bouvier, S ;
Bradley, K ;
Brady, FP ;
Braithwaite, ES ;
Braithwaite, W ;
Brandin, A ;
Brown, RL ;
Brugalette, G ;
Byrd, C ;
Caines, H ;
Sánchez, MCD ;
Cardenas, A ;
Carr, L .
PHYSICAL REVIEW LETTERS, 2001, 86 (03) :402-407
[2]   Multiplicity distribution and spectra of negatively charged hadrons in Au+Au collisions at √sNN=130 GeV -: art. no. 112303 [J].
Adler, C ;
Ahammed, Z ;
Allgower, C ;
Amonett, J ;
Anderson, BD ;
Anderson, M ;
Averichev, GS ;
Balewski, J ;
Barannikova, O ;
Barnby, LS ;
Baudot, J ;
Bekele, S ;
Belaga, VV ;
Bellwied, R ;
Berger, J ;
Bichsel, H ;
Bland, LC ;
Blyth, CO ;
Bonner, BE ;
Bossingham, R ;
Boucham, A ;
Brandin, A ;
Caines, H ;
Sánchez, MCD ;
Cardenas, A ;
Carroll, J ;
Castillo, J ;
Castro, M ;
Cebra, D ;
Chattopadhyay, S ;
Chen, ML ;
Chen, Y ;
Chernenko, SP ;
Cherney, M ;
Chikanian, A ;
Choi, B ;
Christie, W ;
Coffin, JP ;
Conin, L ;
Cormier, TM ;
Cramer, JG ;
Crawford, HJ ;
DeMello, M ;
Deng, WS ;
Derevschikov, AA ;
Didenko, L ;
Draper, JE ;
Dunin, VB ;
Dunlop, JC ;
Eckardt, V .
PHYSICAL REVIEW LETTERS, 2001, 87 (11) :112303-112303
[3]   Midrapidity antiproton-to-proton ratio from Au+Au collisions at √sNN=130 GeV [J].
Adler, C ;
Ahammed, Z ;
Allgower, C ;
Anderson, M ;
Averichev, GS ;
Balewski, J ;
Barannikova, O ;
Barnby, LS ;
Baudot, J ;
Bekele, S ;
Belaga, VV ;
Bellwied, R ;
Berger, J ;
Bichsel, H ;
Bland, LC ;
Blyth, CO ;
Bonner, BE ;
Bossingham, R ;
Boucham, A ;
Brandin, A ;
Caines, H ;
Sánchez, MCD ;
Cardenas, A ;
Carroll, J ;
Castillo, J ;
Castro, M ;
Cebra, D ;
Chattopadhyay, S ;
Chen, ML ;
Chen, Y ;
Chernenko, SP ;
Cherney, M ;
Chikanian, A ;
Choi, B ;
Christie, W ;
Coffin, JP ;
Conin, L ;
Cormier, TM ;
Cramer, JG ;
Crawford, HJ ;
DeMello, M ;
Deng, WS ;
Derevschikov, AA ;
Didenko, L ;
Draper, JE ;
Dunin, VB ;
Dunlop, JC ;
Eckardt, V ;
Efimov, LG ;
Emelianov, V .
PHYSICAL REVIEW LETTERS, 2001, 86 (21) :4778-4782
[4]  
AGGRAWAL MM, 1998, NUCL PHYS A, V638, P459
[5]  
AJITANAND NN, 1997, NUCL PHYS A, V638, P415
[6]   STRING FUSION AND PARTICLE-PRODUCTION AT HIGH-ENERGIES - MONTE-CARLO STRING FUSION MODEL [J].
AMELIN, NS ;
BRAUN, MA ;
PAJARES, C .
ZEITSCHRIFT FUR PHYSIK C-PARTICLES AND FIELDS, 1994, 63 (03) :507-516
[7]   COLLECTIVITY, ENERGY DENSITY AND BARYON DENSITY IN PB ON PB COLLISIONS [J].
AMELIN, NS ;
STAUBO, EF ;
CSERNAI, LP ;
TONEEV, VD ;
GUDIMA, KK ;
STROTTMAN, D .
PHYSICS LETTERS B, 1991, 261 (04) :352-356
[8]   MULTIPLE PRODUCTION IN THE MONTE-CARLO STRING FUSION MODEL [J].
AMELIN, NS ;
BRAUN, MA ;
PAJARES, C .
PHYSICS LETTERS B, 1993, 306 (3-4) :312-318
[9]   TRANSVERSE FLOW AND COLLECTIVITY IN ULTRARELATIVISTIC HEAVY-ION COLLISIONS [J].
AMELIN, NS ;
STAUBO, EF ;
CSERNAI, LP ;
TONEEV, VD ;
GUDIMA, KK ;
STROTTMAN, D .
PHYSICAL REVIEW LETTERS, 1991, 67 (12) :1523-1526
[10]  
AMELIN NS, 1992, NUCL PHYS A, V544, pC463, DOI 10.1016/0375-9474(92)90598-E