Effect of Hagedorn states on isothermal compressibility of hadronic matter formed in heavy-ion collisions: From NICA to LHC energies

被引:13
作者
Khuntia, Arvind [1 ]
Tiwari, Swatantra Kumar [1 ]
Sharma, Pramod [1 ]
Sahoo, Raghunath [1 ]
Nayak, Tapan K. [2 ,3 ]
机构
[1] Indian Inst Technol Indore, Sch Basic Sci, Discipline Phys, Indore 453552, Madhya Pradesh, India
[2] Homi Bhabha Natl Inst, Natl Inst Sci Educ & Res, Jatni 752050, Odisha, India
[3] CERN, CH-1211 Geneva 23, Switzerland
关键词
DECONFINING PHASE-TRANSITION; NUCLEUS-NUCLEUS COLLISIONS; BY-EVENT ANALYSIS; EXCLUDED-VOLUME; MODEL; EQUILIBRATION; FLUCTUATIONS; ORDER;
D O I
10.1103/PhysRevC.100.014910
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
In this work, we have studied the isothermal compressibility (kappa(T)) as a function of temperature, baryon chemical potential, and center-of-mass energy (root s(NN)) using hadron resonance gas (HRG) and excluded-volume hadron resonance gas (EV-HRG) models. A mass cut-off dependence of isothermal compressibility has been studied for a physical resonance gas. Further, we study the effect of heavier resonances (> 2 GeV) on the isothermal compressibility by considering the Hagedorn mass spectrum, rho(m) similar to exp(bm)/(m(2) + m(0)(2))(5/4). Here the parameters b and m(0) are extracted after comparing the results of recent lattice QCD simulations at finite baryonic chemical potential. We find a significant difference between the results obtained in EV-HRG and HRG models at higher temperatures. The inclusion of the Hagedorn mass spectrum in the partition function for hadron gas has a large effect at a higher temperature. A higher mass cut-off in the Hagedorn mass spectrum takes the isothermal compressibility to a minimum value, which occurs near the Hagedorn temperature (T-H). We show explicitly that at the future low-energy accelerator facilities like FAIR (CBM), Darmstadt, and NICA, Dubna, the created matter would have higher compressibility compared to the high-energy facilities like the Relativistic Heavy Ion Collider and Large Hadron Collider.
引用
收藏
页数:7
相关论文
共 51 条
[1]   Freeze-out conditions from net-proton and net-charge fluctuations at RHIC [J].
Alba, Paolo ;
Alberico, Wanda ;
Bellwied, Rene ;
Bluhm, Marcus ;
Sarti, Valentina Mantovani ;
Nahrgang, Marlene ;
Ratti, Claudia .
PHYSICS LETTERS B, 2014, 738 :305-310
[2]   GENERALIZATION OF MEAN-FIELD MODELS TO ACCOUNT FOR EFFECTS OF EXCLUDED-VOLUME [J].
ANCHISHKIN, D ;
SUHONEN, E .
NUCLEAR PHYSICS A, 1995, 586 (04) :734-754
[3]   Hadron production in central nucleus-nucleus collisions at chemical freeze-out [J].
Andronic, A. ;
Braun-Munzinger, P. ;
Stachel, J. .
NUCLEAR PHYSICS A, 2006, 772 (3-4) :167-199
[4]   The order of the quantum chromodynamics transition predicted by the standard model of particle physics [J].
Aoki, Y. ;
Endrodi, G. ;
Fodor, Z. ;
Katz, S. D. ;
Szabo, K. K. .
NATURE, 2006, 443 (7112) :675-678
[5]   Specific heat of matter formed in relativistic nuclear collisions [J].
Basu, Sumit ;
Chatterjee, Sandeep ;
Chatterjee, Rupa ;
Nayak, Tapan K. ;
Nandi, Basanta K. .
PHYSICAL REVIEW C, 2016, 94 (04)
[6]   Equation of state in (2+1)-flavor QCD [J].
Bazavov, A. ;
Bhattacharya, Tanmoy ;
DeTar, C. ;
Ding, H. -T. ;
Gottlieb, Steven ;
Gupta, Rajan ;
Hegde, P. ;
Heller, U. M. ;
Karsch, F. ;
Laermann, E. ;
Levkova, L. ;
Mukherjee, Swagato ;
Petreczky, P. ;
Schmidt, C. ;
Schroeder, C. ;
Soltz, R. A. ;
Soeldner, W. ;
Sugar, R. ;
Wagner, M. ;
Vranas, P. .
PHYSICAL REVIEW D, 2014, 90 (09)
[7]   On chemical equilibrium in nuclear collisions [J].
Becattini, F ;
Gazdzicki, M ;
Sollfrank, J .
EUROPEAN PHYSICAL JOURNAL C, 1998, 5 (01) :143-153
[8]   Features of particle multiplicities and strangeness production in central heavy ion collisions between 1.7A and 158A GeV/c -: art. no. 024901 [J].
Becattini, F ;
Cleymans, J ;
Keränen, A ;
Suhonen, E ;
Redlich, K .
PHYSICAL REVIEW C, 2001, 64 (02) :249011-249019
[9]   Freeze-out temperature from net-kaon fluctuations at energies available at the BNL Relativistic Heavy Ion Collider [J].
Bellwied, R. ;
Noronha-Hostler, J. ;
Parotto, P. ;
Vazquez, I. Portillo ;
Ratti, C. ;
Stafford, J. M. .
PHYSICAL REVIEW C, 2019, 99 (03)
[10]   Hadron production in Au-Au collisions at RHIC [J].
Braun-Munzinger, P ;
Magestro, D ;
Redlich, K ;
Stachel, J .
PHYSICS LETTERS B, 2001, 518 (1-2) :41-46