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Momentum broadening in unstable quark-gluon plasma

机译:在不稳定的夸克 - 胶质等离子体中膨胀势头

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Quark-gluon plasma produced at the early stage of ultrarelativistic heavy-ion collisions is unstable, if weakly coupled, due to the anisotropy of its momentum distribution. Chromomagnetic fields are spontaneously generated and can reach magnitudes much exceeding typical values of the fields in equilibrated plasma. We consider a high-energy test parton traversing an unstable plasma that is populated with strong fields.We study the momentum broadening parameter q which determines the radiative energy loss of the test parton. We develop a formalism which gives q as the solution of an initial value problem, and we focus on extremely oblate plasmas which are physically relevant for relativistic heavy-ion collisions. The parameter q is found to be strongly dependent on time. For short times it is of the order of the equilibrium value, but at later times q grows exponentially due to the interaction of the test parton with unstable modes and becomes much bigger than the value in equilibrium. The momentum broadening is also strongly directionally dependent and is largest when the test parton velocity is transverse to the beam axis. Consequences of our findings for the phenomenology of jet quenching in relativistic heavy-ion collisions are briefly discussed.
机译:如果弱耦合,则在超弧形重离子碰撞的早期生产的夸克 - 胶原等离子体由于其动量分布的各向异性,因此是不稳定的。自发地产生色谱磁场,可以达到超过平衡等离子体中的场的典型值的大小。我们考虑一个高能量的测试Parton,穿越一种不稳定的等离子体,这些等离子体被强大的田地填充。我们研究了势头拓宽参数Q,它决定了测试Parton的辐射能量损失。我们开发一种形式主义,使Q为初始值问题的解决方案,我们专注于极其禁止的等离子体,其与相对论的重离子碰撞物理相关。发现参数Q依赖于时间。短时间,它是平衡值的顺序,但在后面的时间Q由于测试Pareon与不稳定模式的相互作用而导致的次数呈指数级,并且变得比平衡值更大。当测试PATON速度横向于梁轴时,膨胀势头也依赖于依赖性并且最大。简要讨论了我们对相对论的重离子碰撞中的喷射淬火现象学的结果的后果。

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  • 来源
    《Physical Review C》 |2017年第2017期|024906.1-024906.19|共19页
  • 作者单位

    Department of Physics Brandon University Brandon Manitoba R7A 6A9 Canada Winnipeg Institute for Theoretical Physics Winnipeg Manitoba Canada;

    Institute of Physics Jan Kochanowski University Kielce Poland National Centre for Nuclear Research Warsaw Poland;

    Physics Department Brookhaven National Laboratory Upton New York 11973 USA;

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