Energy dependence of the freeze-out parameters extracted from Au plus Au and Pb plus Pb collisions using THERMUS

被引:2
作者
Ghimiray, Monika [1 ]
Subba, Nirpat [1 ]
Ahmed, Azharuddin [1 ]
Tawfik, Abdel Nasser [2 ]
Haldar, Prabir Kumar [1 ]
机构
[1] Cooch Behar Panchanan Barma Univ, Dept Phys, Vivekananda St, Cooch Behar 736101, W Bengal, India
[2] Future Univ Egypt FUE, End 90th Str, New Cairo 11835, Egypt
关键词
Relativistic heavy-ion collisions; THERMUS; Freeze-out parameters; QUARK-GLUON PLASMA; NUCLEUS-NUCLEUS COLLISIONS; QCD PHASE-DIAGRAM; PARTICLE-PRODUCTION; HADRON-PRODUCTION; MULTIPLICITY DISTRIBUTIONS; ELLIPTIC FLOW; GAS-MODEL; EQUILIBRATION; FLUCTUATIONS;
D O I
10.1007/s12648-022-02492-z
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
In recent years the statistical-thermal model has shown great success in explaining the particle production in heavy-ion collisions, on the one hand. On the other hand, the utilization of the THERMUS code in understanding the particle yields in nuclear experiments has shown tremendous success in the past few years. The THERMUS code allows, among others, for the extraction of the freeze-out parameters in the quantum chromodynamics (QCD) phase diagram. Also, the various nuclear experiments operating at RHIC and LHC energies have shown consistent freeze-out results, which in turn agree well with the lattice QCD simulations. However, we propose using the THERMUS code to understand the particle yields from specific types of collisions in the STAR and NA49 experiments to conclude upon the typical freeze-out parameters in the Au + Au and Pb + Pb collisions. We conclude that THERMUS is very useful in determining the thermodynamic parameters, including the chemical freeze-out parameters, whose dependence is consistent with the previously obtained phase diagram and phase boundary. The slight difference observed in the freeze-out parameters could be explained due to differences in the input data but need to be confirmed in further studies. We have also performed the calculations including and excluding f(0)(500) and concluded that its effect on the freeze-out parameter is globally negligible.
引用
收藏
页码:1551 / 1564
页数:14
相关论文
共 124 条
[1]   Systematic measurements of identified particle spectra in pp, d plus Au, and Au plus Au collisions at the STAR detector [J].
Abelev, B. I. ;
Aggarwal, M. M. ;
Ahammed, Z. ;
Anderson, B. D. ;
Arkhipkin, D. ;
Averichev, G. S. ;
Bai, Y. ;
Balewski, J. ;
Barannikova, O. ;
Barnby, L. S. ;
Baudot, J. ;
Baumgart, S. ;
Beavis, D. R. ;
Bellwied, R. ;
Benedosso, F. ;
Betts, R. R. ;
Bhardwaj, S. ;
Bhasin, A. ;
Bhati, A. K. ;
Bichsel, H. ;
Bielcik, J. ;
Bielcikova, J. ;
Biritz, B. ;
Bland, L. C. ;
Bombara, M. ;
Bonner, B. E. ;
Botje, M. ;
Bouchet, J. ;
Braidot, E. ;
Brandin, A. V. ;
Bruna, E. ;
Bueltmann, S. ;
Burton, T. P. ;
Bystersky, M. ;
Cai, X. Z. ;
Caines, H. ;
Sanchez, M. Calderson de la Barca ;
Callner, J. ;
Catu, O. ;
Cebra, D. ;
Cendejas, R. ;
Cervantes, M. C. ;
Chajecki, Z. ;
Chaloupka, P. ;
Chattopadhyay, S. ;
Chen, H. F. ;
Chen, J. H. ;
Chen, J. Y. ;
Cheng, J. ;
Cherney, M. .
PHYSICAL REVIEW C, 2009, 79 (03)
[2]   Centrality dependence of chemical freeze-out parameters from net-proton and net-charge fluctuations using a hadron resonance gas model [J].
Adak, Rama Prasad ;
Das, Supriya ;
Ghosh, Sanjay K. ;
Ray, Rajarshi ;
Samanta, Subhasis .
PHYSICAL REVIEW C, 2017, 96 (01)
[3]   Scaling properties of hyperon production in Au+Au collisions at √sNN=200 GeV [J].
Adams, J. ;
Aggarwal, M. M. ;
Ahammed, Z. ;
Amonett, J. ;
Anderson, B. D. ;
Anderson, M. ;
Arkhipkin, D. ;
Averichev, G. S. ;
Bai, Y. ;
Balewski, J. ;
Barannikova, O. ;
Barnby, L. S. ;
Baudot, J. ;
Bekele, S. ;
Belaga, V. V. ;
Bellingeri-Laurikainen, A. ;
Bellwied, R. ;
Bezverkhny, B. I. ;
Bhardwaj, S. ;
Bhasin, A. ;
Bhati, A. K. ;
Bichsel, H. ;
Bielcik, J. ;
Bielcikova, J. ;
Bland, L. C. ;
Blyth, C. O. ;
Blyth, S-L. ;
Bonner, B. E. ;
Botje, M. ;
Bouchet, J. ;
Brandin, A. V. ;
Bravar, A. ;
Bystersky, M. ;
Cadman, R. V. ;
Cai, X. Z. ;
Caines, H. ;
Calderon de la Barca Sanchez, M. ;
Castillo, J. ;
Catu, O. ;
Cebra, D. ;
Chajecki, Z. ;
Chaloupka, P. ;
Chattopadhyay, S. ;
Chen, H. F. ;
Chen, J. H. ;
Chen, Y. ;
Cheng, J. ;
Cherney, M. ;
Chikanian, A. ;
Choi, H. A. .
PHYSICAL REVIEW LETTERS, 2007, 98 (06)
[4]   Identified particle distributions in pp and Au+Au collisions at √sNN=200 GeV -: art. no. 112301 [J].
Adams, J ;
Adler, C ;
Aggarwal, MM ;
Ahammed, Z ;
Amonett, J ;
Anderson, BD ;
Anderson, M ;
Arkhipkin, D ;
Averichev, GS ;
Badyal, SK ;
Balewski, J ;
Barannikova, O ;
Barnby, LS ;
Baudot, J ;
Bekele, S ;
Belaga, VV ;
Bellwied, R ;
Berger, J ;
Bezverkhny, BI ;
Bhardwaj, S ;
Bhaskar, P ;
Bhati, AK ;
Bichsel, H ;
Billmeier, A ;
Bland, LC ;
Blyth, CO ;
Bonner, BE ;
Botje, M ;
Boucham, A ;
Brandin, A ;
Bravar, A ;
Cadman, RV ;
Cai, XZ ;
Caines, H ;
Sánchez, MCD ;
Carroll, J ;
Castillo, J ;
Castro, M ;
Cebra, D ;
Chaloupka, P ;
Chattopadhyay, S ;
Chen, HF ;
Chen, Y ;
Chernenko, SP ;
Cherney, M ;
Chikanian, A ;
Choi, B ;
Christie, W ;
Coffin, JP ;
Cormier, TM .
PHYSICAL REVIEW LETTERS, 2004, 92 (11) :112301-1
[5]  
Adler C, 2002, PHYS REV LETT, V89, DOI [10.1103/PhysRevLett.89.092301, 10.1103/PhysRevLett.89.132301]
[6]   Energy dependence of pion and kaon production in central Pb plus Pb collisions -: art. no. 054902 [J].
Afanasiev, SV ;
Anticic, T ;
Barna, D ;
Bartke, J ;
Barton, RA ;
Behler, M ;
Betev, L ;
Bialkowska, H ;
Billmeier, A ;
Blume, C ;
Blyth, CO ;
Boimska, B ;
Botje, M ;
Bracinik, J ;
Bramm, R ;
Brun, R ;
Buncic, P ;
Cerny, V ;
Cramer, JG ;
Csató, P ;
Dinkelaker, P ;
Eckhardt, V ;
Filip, P ;
Fodor, Z ;
Foka, P ;
Freund, P ;
Friese, V ;
Gál, J ;
Gazdzicki, M ;
Georgopoulos, G ;
Gladysz, E ;
Hegyi, S ;
Höhne, C ;
Igo, G ;
Jones, PG ;
Kadija, K ;
Karev, A ;
Kolesnikov, VI ;
Kollegger, T ;
Kowalski, M ;
Kraus, I ;
Kreps, M ;
van Leeuwen, M ;
Lévai, P ;
Malakhov, AI ;
Margetis, S ;
Markert, C ;
Mayes, BW ;
Melkumov, GL ;
Mischke, A .
PHYSICAL REVIEW C, 2002, 66 (05)
[7]   Strange and multistrange particle production in Au plus Au collisions at √sNN=62.4 GeV [J].
Aggarwal, M. M. ;
Ahammed, Z. ;
Alakhverdyants, A. V. ;
Alekseev, I. ;
Alford, J. ;
Anderson, B. D. ;
Anson, C. D. ;
Arkhipkin, D. ;
Averichev, G. S. ;
Balewski, J. ;
Beavis, D. R. ;
Bellwied, R. ;
Betancourt, M. J. ;
Betts, R. R. ;
Bhasin, A. ;
Bhati, A. K. ;
Bichsel, H. ;
Bielcik, J. ;
Bielcikova, J. ;
Biritz, B. ;
Bland, L. C. ;
Borowski, W. ;
Bouchet, J. ;
Braidot, E. ;
Brandin, A. V. ;
Bridgeman, A. ;
Brovko, S. G. ;
Bruna, E. ;
Bueltmann, S. ;
Bunzarov, I. ;
Burton, T. P. ;
Cai, X. Z. ;
Caines, H. ;
Sanchez, M. Calderon de la Barca ;
Cebra, D. ;
Cendejas, R. ;
Cervantes, M. C. ;
Chajecki, Z. ;
Chaloupka, P. ;
Chattopadhyay, S. ;
Chen, H. F. ;
Chen, J. H. ;
Chen, J. Y. ;
Cheng, J. ;
Cherney, M. ;
Chikanian, A. ;
Choi, K. E. ;
Christie, W. ;
Chung, P. ;
Codrington, M. J. M. .
PHYSICAL REVIEW C, 2011, 83 (02)
[8]   Flavor-dependent eigenvolume interactions in a hadron resonance gas [J].
Alba, P. ;
Vovchenko, V. ;
Gorenstein, M., I ;
Stoecker, H. .
NUCLEAR PHYSICS A, 2018, 974 :22-34
[9]   Thermodynamics of two flavor QCD to sixth order in quark chemical potential -: art. no. 054508 [J].
Allton, CR ;
Döring, M ;
Ejiri, S ;
Hands, SJ ;
Kaczmarek, O ;
Karsch, F ;
Laermann, E ;
Redlich, K .
PHYSICAL REVIEW D, 2005, 71 (05) :1-20
[10]  
Alt C, 2005, PHYS REV LETT, V94, DOI [10.1103/PhysRevLett.94.192301, 10.1103/PhysRevLett.94.052301]