Physics perspectives of heavy-ion collisions at very high energy

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作者
Ning-bo Chang
ShanShan Cao
Bao-yi Chen
Shi-yong Chen
Zhen-yu Chen
Heng-Tong Ding
Min He
Zhi-quan Liu
Long-gang Pang
Guang-you Qin
Ralf Rapp
Björn Schenke
Chun Shen
HuiChao Song
Hao-jie Xu
Qun Wang
Xin-Nian Wang
Ben-wei Zhang
Han-zhong Zhang
XiangRong Zhu
Peng-fei Zhuang
机构
[1] Central China Normal University,Key Laboratory of Quark and Lepton Physics (MOE) and Institute of Particle Physics
[2] Lawrence Berkeley National Laboratory,Nuclear Science Division MS70R0319
[3] Tsinghua University,Physics Department
[4] Nanjing University of Science and Technology,Department of Applied Physics
[5] Texas A&M University,Cyclotron Institute and Department of Physics and Astronomy
[6] Brookhaven National Laboratory,Physics Department
[7] McGill University,Department of Physics
[8] Peking University,Department of Physics and State Key Laboratory of Nuclear Physics and Technology
[9] University of Science and Technology of China,Department of Modern Physics
关键词
quark-gluon plasma; heavy-ion collisions; QCD phase transition; properties of QGP;
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摘要
Heavy-ion collisions at very high colliding energies are expected to produce a quark-gluon plasma (QGP) at the highest temperature obtainable in a laboratory setting. Experimental studies of these reactions can provide an unprecedented range of information on properties of the QGP at high temperatures. We report theoretical investigations of the physics perspectives of heavy-ion collisions at a future high-energy collider. These include initial parton production, collective expansion of the dense medium, jet quenching, heavy-quark transport, dissociation and regeneration of quarkonia, photon and dilepton production. We illustrate the potential of future experimental studies of the initial particle production and formation of QGP at the highest temperature to provide constraints on properties of strongly interaction matter.
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