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首页> 外文期刊>Physical Review C: Nuclear Physics >Transverse-momentum fluctuations in relativistic heavy-ion collisions from event-by-event viscous hydrodynamics
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Transverse-momentum fluctuations in relativistic heavy-ion collisions from event-by-event viscous hydrodynamics

机译:逐事件粘性流体动力学的相对论重离子碰撞中的横向动量波动

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摘要

We analyze event-by-event fluctuations of the transverse momentum in relativistic heavy-ion collisions at √sNN=200 GeV in the framework based on the fluctuating Glauber-model initial conditions, event-by-event (3+1)-dimensional viscous hydrodynamics, and statistical hadronization. We use the scaled fluctuation measure 〈ΔpTiΔpTj〉/〈〈pT〉〉. The identified “geometric” mechanism of generating the transverse-momentum fluctuations from the initial size fluctuations, transmitted to the final statistical-hadronization phase with hydrodynamics, is capable of easily reproducing the magnitude of the effect and explains the basic features of the data. On the other hand, it is somewhat too strong, hinting on modification of the popular Glauber approach to the earliest phase of the collision. We have checked that the considered measure is insensitive of the values of the shear and bulk viscosity coefficients, the freeze-out temperature, and the smoothing parameter for the initial distribution. It remains unaltered in the core-corona picture and is insensitive to the transverse-momentum conservation, approximately imposed in the statistical hadronization.
机译:基于波动的Glauber模型初始条件,逐事件(3 + 1)维粘性,我们在框架中分析了相对论重离子碰撞中√sNN= 200 GeV时横向动量的逐事件波动流体力学和统计强子化。我们使用比例波动度量measureΔpTiΔpTj〉 / 〈〈pT〉〉。公认的“几何”机制可以从初始尺寸波动中产生横向动量波动,并通过流体动力学传递到最终的统计强子化阶段,从而能够轻松再现效应的大小并解释数据的基本特征。另一方面,它太强了,暗示了流行的Glauber方法在碰撞最早阶段的修改。我们已经检查了所考虑的量度对于初始分布的剪切和体粘度系数,冻结温度和平滑参数的值不敏感。它在核心电晕图像中保持不变,并且对横向动量守恒不敏感,而横向动量守恒近似于统计强子化。

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  • 来源
    《Physical Review C: Nuclear Physics》 |2012年第4期|1-10|共10页
  • 作者单位

    1The H. Niewodniczański Institute of Nuclear Physics Polish Academy of Sciences PL-31342 Kraków Poland2Institute of Physics Rzeszów University PL-35959 Rzeszów Poland3Institute of Physics Jan Kochanowski University PL-25406 Kielce Poland;

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