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Correlations with Non-Photonic Electrons in√ sNN = 200 GeV Au+Au Collisions in STAR.

机译:在√sNN = 200 GeV Au + Au碰撞中与非光子电子的相关性。

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摘要

At sufficiently high temperatures and densities quarks and gluons exist in a deconfined state called Quark Gluon Plasma (QGP). QGP existed in the Universe shortly after the Big Bang, and today is created in accelerator based experiments which collide heavy nuclei at high energies. Results from these experiments point to a hot, dense and strongly interacting state of deconfined quarks and gluons. The study of heavy flavor probes (those originating from c and b quarks) is an active area of research in heavy ion collisions. Heavy quarks are produced in the initial hard scatterings of collisions and thus are sensitive to the entire evolution of the medium. They also potentially have different sensitivity to medium induced energy loss compared to light flavors.;This dissertation investigates the interactions of heavy flavor quarks with the medium by studying correlations between electrons from heavy flavor decays and hadrons. At high transverse momentum, the direction of the electron is highly correlated with the direction of the parent heavy flavor meson. We look for evidence of energy loss in the QGP as well as jet induced effects on the medium. We present electron-hadron correlations from Au+Au collisions in a wide range of centrality bins as well as correlations from p+p. The datasets used are the best currently available due to high statistics and low material in the detector. We also investigate the dependence on the orientation of the trigger particle to the event plane to look for path length dependent effects on the correlation as well as non-flow contributions to electron electron v2.
机译:在足够高的温度和密度下,夸克和胶子以限定的状态存在,称为夸克胶子等离子体(QGP)。 QGP在宇宙大爆炸之后不久就存在于宇宙中,今天是在加速器实验中创建的,该实验在高能下碰撞重核。这些实验的结果表明,有限的夸克和胶子处于热,致密且强烈相互作用的状态。重味探针(源自c和b夸克的探针)的研究是重离子碰撞研究的活跃领域。在碰撞的最初硬散射中会产生重夸克,因此对介质的整个演化都非常敏感。与淡味调味剂相比,它们对培养基诱导的能量损失的敏感性也可能不同。;本文通过研究浓味调味剂衰变的电子与强子之间的相关性,研究了重口味夸克与培养基的相互作用。在高横向动量下,电子的方向与母体浓味介子的方向高度相关。我们寻找QGP中能量损失以及喷射诱导的介质影响的证据。我们介绍了在宽范围的中心区中来自Au + Au碰撞的电子-强子相关性以及来自p + p的相关性。由于检测器中的高统计量和低材料量,因此使用的数据集是当前可获得的最佳数据集。我们还研究了对触发粒子到事件平面方向的依赖性,以寻找对相关性的路径长度依赖性影响以及对电子v2的非流动贡献。

著录项

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Nuclear physics and radiation.;High temperature physics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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