论文标题
在重离子碰撞中找到冻结曲线
Locating the freeze-out curve in heavy-ion collisions
论文作者
论文摘要
基于运输方程,我们认为,高碰撞能量的重离子碰撞中的手性动力学有效地将火球的热物理学脱离了。通过在LHC能量的完整脱钩时,手性冷凝物在时间尺度上比流体动力学场的典型演化时间及其波动的时间尺度短得多。特别是,在所有碰撞能量下,净 - 巴里元的密度均保持与散装演化的耦合。由于黑核的质量尺度受到手性冷凝物的控制,因此在化学冷冻时对强子产生的统计描述中使用真空质量是合理的,以实现高碰撞能量。我们预测,在较低的碰撞能量下,手性冷凝物与热培养基的耦合逐渐增加,这会随着相关的标质质量的影响而逐渐增加。对冻结曲线位置的新估计值考虑了这些效果。
Based on transport equations we argue that the chiral dynamics in heavy-ion collisions at high collision energies effectively decouples from the thermal physics of the fireball. With full decoupling at LHC energies the chiral condensate relaxes to its vacuum expectation value on a much shorter time scale than the typical evolution time of the fluid dynamical fields and their fluctuations. In particular, the net-baryon density remains coupled to the bulk evolution at all collision energies. As the mass scales of the hadrons are controlled by the chiral condensate, it is reasonable to employ vacuum masses in the statistical description of the hadron production at the chemical freeze-out for high collision energies. We predict that at lower collision energies the coupling of the chiral condensate to the thermal medium gradually increases with consequences for the related hadronic masses. A new estimate for the location of the freeze-out curve takes these effects into account.