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Correlation functions and cumulants in elliptic flow analysis

机译:椭圆流分析中的相关函数和累积量

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We consider various methods of flow analysis in heavy ion collisions and compare experimental data on corresponding observables to the predictions of our saturation model proposed earlier [Nucl. Phys. A 708 (2002) 413]. We demonstrate that, due to the nature of the standard flow analysis, azimuthal distribution of particles with respect to reaction plane determined from the second order harmonics should always be proportional to cos 2(phi - Psi(R)) independent of the physical origin of particle correlations (flow or non-flow). The amplitude of this distribution is always physical and proportional to v(2). Two-particle correlations analysis is, therefore, a more reliable way of extracting the shape of physical azimuthal anisotropy. We demonstrate that two-particle correlation functions generated in our minijet model of particle production [Nucl. Phys. A 708 (2002) 413] are in good agreement with the data reported by PHENIX. We discuss the role of non-flow correlations in the cumulant flow analysis and demonstrate using a simple example that if the flow is weak, higher order cumulants analysis does not significantly reduce the contribution of non-flow correlations to elliptic flow observable v(2) in RHIC data. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 60]
机译:我们考虑了重离子碰撞中的各种流动分析方法,并比较了相应可观测值的实验数据与我们先前提出的饱和模型的预测[Nucl.Natl.Acad.Sci.USA。物理A 708(2002)413]。我们证明,由于标准流动分析的性质,相对于由二阶谐波确定的反应平面而言,粒子的方位角分布应始终与cos 2(phi-Psi(R))成正比,而与粒子的物理起源无关粒子相关性(流动或非流动)。该分布的幅度始终是物理的,并且与v(2)成比例。因此,两粒子相关性分析是提取物理方位各向异性形状的一种更可靠的方法。我们证明了在我们的微粒生产的微型喷射模型中产生的两个微粒相关函数[Nucl。物理A 708(2002)413]与PHENIX报告的数据非常吻合。我们讨论了非流量相关性在累积流量分析中的作用,并通过一个简单的示例演示了:如果流量微弱,则高阶累积量分析不会显着减少非流量相关性对椭圆形流量可观察值v(2)的贡献。在RHIC数据中。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:60]

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