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Calculation of power spectrum of the little bangs

机译:小刘海功率谱的计算

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摘要

The power spectrum of the momentum distributions of particles have been estimated with Optical Glauber and Monte Carlo Glauber initial conditions for relativistic heavy ion collisions. The evaluation procedure adopted in this work is analogous to the one used in the calculation of power spectrum in Cosmic Microwave Background Radiation (CMBR). The power spectrum due to perturbations in the phase space distribution of the particles has also been evaluated. The perturbation in phase space has been evolved through the Boltzmann transport equation in an expanding quark gluon plasma (QGP) background. The expansion of the QGP has been treated within the purview of (3 + 1)-dimensional relativistic hydrodynamics. We observe that the nonequilibrium effects introduced as perturbations in the phase space distributions can be traced through its variation with temperature which is distinctly different from the case of vanishing perturbation. A relation has been derived between the power spectrum and the flow harmonics.
机译:粒子的动力分布的功率谱估计了光梳鞋带和Monte Carlo Glauber初始条件,用于相对论重离子碰撞。本工作中采用的评估程序类似于用于计算宇宙微波背景辐射(CMBR)中的功率谱的频谱。还评估了由于颗粒的相空间分布中引起的扰动引起的功率谱。通过在扩展夸克胶质等离子体(QGP)背景中,通过Boltzmann传输方程演化了相空间的扰动。 QGP的扩展已经在(3 + 1) - 二维相对论流体动力学的范围内进行治疗。我们观察到作为相位空间分布中的扰动引入的非预测效果可以通过其温度的变化来追踪,其与消失扰动的情况明显不同。在功率谱和流量谐波之间导出了关系。

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