会议论文详细信息
Workshop for young scientists on the physics of ultrarelativistic nucleus-nucleus collisions 2016
Exploring the Nuclear Phase Diagram with Beam Energy Scans
Horvat, Stephen
关键词: Collision energies;    Critical end-point;    Deconfinement;    First-order phase transitions;    High-energy collisions;    Low collision energy;    Quark-gluon plasma;    Relativistic heavy ion collision;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/832/1/012039/pdf
DOI  :  10.1088/1742-6596/832/1/012039
来源: IOP
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【 摘 要 】
The nuclear phase diagram is mapped using beam energy scans of relativistic heavy-ion collisions. This mapping is possible because different collision energies develop along different trajectories through the phase diagram. High energy collisions will evolve though a crossover phase transition according to lattice QCD, but lower collision energies may traverse a first order phase transition. There are hints for this first order phase transition and its critical endpoint, but further measurements and theoretical guidance is needed. In addition to mapping the phase transition, beam energy scans allow us to see if we can turn off the signatures of deconfinement. If an observable is a real signature for the formation of the deconfined state called quark-gluon plasma, then it should turn off at sufficiently low collision energies. In this summary talk I will show the current state of the field using beam energy scan results from RHIC and SPS, I will show where precise theoretical guidance is needed for understanding recent measurements, and I will motivate the need for more data and new measurements from FAIR, NICA, RHIC, and the SPS.
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