Nonequilibrium kinetic freeze-out properties in relativistic heavy ion collisions from energies employed at the RHIC beam energy scan to those available at the LHC
暂无分享,去创建一个
Zebo Tang | L. Yi | Jian Deng | Zhangbu Xu | Jia Chen
[1] Fu-Hu Liu,et al. Erratum to: Extracting kinetic freeze-out temperature and radial flow velocity from an improved Tsallis distribution , 2017 .
[2] Fu-Hu Liu,et al. Kinetic freeze-out temperatures in central and peripheral collisions: which one is larger? , 2017, 1703.04944.
[3] Fu-Hu Liu,et al. Extracting kinetic freeze-out temperature and radial flow velocity from an improved Tsallis distribution , 2016, 1611.08391.
[4] J. Chen,et al. Beam energy dependence of Hanbury-Brown-Twiss radii from a blast-wave model , 2016, 1602.01564.
[5] Xiaofeng Luo,et al. Exploring the QCD Phase Structure with Beam Energy Scan in Heavy-ion Collisions , 2015, 1512.09215.
[6] J. Cleymans,et al. Radial flow in non-extensive thermodynamics and study of particle spectra at LHC in the limit of small (q - 1) , 2015, 1507.08434.
[7] B. Mohanty,et al. Freeze-Out Parameters in Heavy-Ion Collisions at AGS, SPS, RHIC, and LHC Energies , 2015 .
[8] G. G. Barnaföldi,et al. A ‘soft + hard’ model for heavy-ion collisions , 2015, 1501.02352.
[9] Sa Das. Identified particle production and freeze-out properties in heavy-ion collisions at RHIC Beam Energy Scan program , 2014, 1412.0499.
[10] G. Wilk,et al. System size dependence of the log-periodic oscillations of transverse momentum spectra , 2014, 1411.5148.
[11] Yugang Ma,et al. Production of Kaon and $\Lambda$ in Nucleus-Nucleus Collisions at Ultrarelativistic Energy from a Blast-Wave Model , 2014, 1411.1500.
[12] C. Ristea,et al. Study of the freeze-out process in heavy ion collisions at relativistic energies , 2013 .
[13] J. G. Contreras,et al. Centrality dependence of charged particle production at large transverse momentum in Pb–Pb collisions at sNN=2.76 TeV☆ , 2012, 1208.2711.
[14] T. S. Biro,et al. Generalised Tsallis Statistics in Electron-Positron Collisions , 2011, 1101.3023.
[15] Zebo Tang,et al. Examination of the species and beam energy dependence of particle spectra using Tsallis statistics , 2009, 0912.0993.
[16] G. Wilk,et al. Power laws in elementary and heavy-ion collisions , 2008, 0810.2939.
[17] D. Kharzeev,et al. Universal properties of bulk viscosity near the QCD phase transition , 2007, 0711.0914.
[18] D. Kharzeev,et al. Bulk viscosity of QCD matter near the critical temperature , 2007, 0705.4280.
[19] Star Collaboration. Energy dependence of charged pion, proton and anti-proton transverse momentum spectra for Au+Au collisions at \sqrt{s_NN} = 62.4 and 200 GeV , 2007, nucl-ex/0703040.
[20] E. al.,et al. Experimental and theoretical challenges in the search for the quark-gluon plasma: The STAR Collaboration's critical assessment of the evidence from RHIC collisions , 2005, nucl-ex/0501009.
[21] T. Biró,et al. Almost exponential transverse spectra from power law spectra , 2003, hep-ph/0309052.
[22] A. Lavagno,et al. Non-extensive statistics, fluctuations and correlations in high-energy nuclear collisions , 1999, nucl-th/9902070.