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Fluctuations with small numbers: Developing the perturbative paradigm for jet physics in the QGP at RHIC and LHC.

机译:少量波动:在RHIC和LHC的QGP中为射流物理学开发扰动范式。

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摘要

Many novel results have emerged from the experimental heavy ion program at the Relativistic Heavy Ion Collider. For some, these necessitate a new paradigm, a jump into the extra dimension of strongly coupled physics and AdS/CFT. This thesis takes the opposite view.;Asymptotic weakly coupled arguments are of course inapplicable. Purely parametric relations are not sufficient as the temperatures are not hot enough, the jet energies not high enough, the lengths not long enough. However, perturbative techniques provide a strong foundation on which to build our explanations of data from RHIC and the upcoming LHC. This thesis presents the first detailed study of both collisional and radiative energy losses, applied to both light and heavy partonic jets at RHIC and LHC. The primary motivation is the heavy quark puzzle, observed through the surprisingly strong quenching of high momentum single non-photonic electrons at RHIC.;Collisional energy loss is likely a non-negligible component of the energy loss of jets. It also provides a calculation in which to examine our assumptions about jet-medium interactions. For the quantities of interest, the soft interactions o, q T are not dominant; the rarer, moderately hard collisions are more important. This impacts the choice of one collision calculation---a simple, first term in a hard thermal loop calculation does not include the necessary medium recoil kinematics---and of the multiple collision convolution---a simple, drag-diffusion scheme is insufficient for the short lengths of interest.;This also motivates an opacity expansion evaluation of the radiative energy loss. This expansion is equivalent to Schrodinger-like equations used in some radiative models, and provides a suitable method of numerical solution to that equation. Presented here is a Monte Carlo numerical integration that can give results to ninth order in opacity and beyond. The results confirm that, for the lengths of interest at RHIC and LHC, the first order is most important and orders beyond third have very little impact on R AA(pT).;These all provide important developments in the perturbative paradigm of jet quenching. While simultaneous explanations of both light and heavy jet results are not yet achieved, both are well within the range of these calculations. This gives strong hope that further developments in the theory and modeling will be able to fit jet results at RHIC and LHC. And then we can move into the era of quantitative jet tomography.
机译:相对论重离子对撞机的实验重离子程序产生了许多新颖的结果。对于某些人来说,这需要一个新的范例,即跳入强耦合物理和AdS / CFT的额外维度。本论文采取相反的观点。渐近弱耦合论证当然是不适用的。由于温度不够高,射流能量不够高,长度不够长,单纯的参数关系是不够的。但是,微扰技术为我们对RHIC和即将到来的LHC的数据进行解释提供了坚实的基础。本文首次对碰撞能量和辐射能量损失进行了详细的研究,将其应用于RHIC和LHC的轻质和重质部分喷射。主要动机是沉重的夸克难题,这是通过在RHIC上对高动量单个非光子电子进行了惊人的强淬灭而观察到的。碰撞能量损失可能是射流能量损失的不可忽略的组成部分。它还提供了一种计算方法,可用于检查我们对喷射介质相互作用的假设。对于感兴趣的数量,软相互作用o,q T不是主要的;罕见的中等程度的碰撞更为重要。这会影响一个碰撞计算的选择-硬热循环计算中的一个简单的第一项不包括必要的中等反冲运动学-和多次碰撞卷积的一个简单的拖动扩散方案是对于短的感兴趣长度来说是不够的。;这也激发了辐射能损失的不透明度扩展评估。这种扩展等效于某些辐射模型中使用的类似于Schrodinger的方程,并为该方程提供了一种数值解的合适方法。此处介绍的是蒙特卡洛数值积分,可以使结果的不透明度达到甚至达到第9阶。结果证实,对于RHIC和LHC的长度而言,一阶是最重要的,三阶以外的阶数对R AA(pT)的影响很小;这些都为射流淬火的扰动范式提供了重要的发展。虽然尚未同时获得对轻型喷气机和重型喷气机结果的同时解释,但两者均在这些计算范围之内。这给在理论和模型上的进一步发展将能够适应RHIC和LHC的射流结果提供了很大的希望。然后,我们可以进入定量射流层析成像时代。

著录项

  • 作者

    Wicks, Simon.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Physics Nuclear.;Physics Theory.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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