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Properties of Fragmentation Photons in p+p Collisions at 200GeV Center-of-Mass Energies.

机译:在200GeV质量中心的p + p碰撞中的碎片光子性质。

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摘要

The strong modification to the production of final state hadrons in heavy ion collisions is a key signature of the hot dense medium produced at energies achieved at the Relativistic Heavy Ion Collider (RHIC). Understanding the mechanisms for the parton energy loss responsible for these modifications is challenging and difficult to constrain with straightforward hadronic measurements, making it necessary to turn to more discriminating probes. One example of such a probe is photons produced by partons as they fragment, fragmentation photons, because the production mechanisms for such photons are similar to those for hadrons, but once produced, fragmentation photons will not interact directly with the medium.;The challenge of distinguishing the signal for such jet-associate photons out of the large decay background motivates first making such measurements in the simple p+p environment. Combining data collected by the PHENIX detector during 2005 and 2006, the yield for fragmentation photons was measured to be on the order of several percent of all photons measured in association with a hadron with transverse momentum between 2 and 5 GeV/c. The use of two-particle correlations coupled with a sophisticated method for identifying and removing decay photons has made it possible to further study the jet properties of these fragmentation photons, in the form of pout and j2T . These results will help to constrain both the underlying theoretical description of direct photon production in p+p, and modifications expected in heavy ion collisions.
机译:在重离子碰撞中对最终态强子产生的强烈修改是在相对论重离子对撞机(RHIC)达到的能量下产生的热致密介质的关键特征。理解造成这些修饰的帕顿能量损失的机制是具有挑战性的,并且很难用简单的强子测量法加以约束,因此有必要转向更具区分性的探针。这种探针的一个例子是Parton分裂时产生的光子,即分裂光子,因为此类光子的产生机制与强子类似,但一旦产生,分裂光子将不会直接与介质相互作用。从大衰减背景中区分出这种与喷射相关的光子的信号,首先促使人们在简单的p + p环境中进行此类测量。结合PHENIX探测器在2005年和2006年收集的数据,测得的碎片光子的产量约为所有光子的百分之几,并与横向动量在2至5 GeV / c之间的强子有关。两粒子相关性的结合以及用于识别和去除衰变光子的复杂方法的使用,使得有可能进一步研究这些分裂光子的射流特性,形式为pout和j2T。这些结果将有助于限制在p + p中直接光子产生的基础理论描述,以及在重离子碰撞中预期的修饰。

著录项

  • 作者

    Hanks, J. A.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Physics Theory.;Physics Elementary Particles and High Energy.;Physics Radiation.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 305 p.
  • 总页数 305
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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