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Measurement of Generalized GDH Integrand for the Neutron and 3He at Low Q2

机译:低Q2下中子和3He的广义GDH积分的测量

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摘要

Despite the success of QCD at high energies where the perturbation calculations can be carried out because of the asymptotic freedom, many fundamental questions, regarding the confinement of quarks and gluons, the nuclear forces, and the nucleon mass and structure, still remain in the non-perturbative regime. Dispersive sum rules, based on universal principles, provide a data-driven approach to study the nucleon structure without model-dependencies. Among those sum rules, the well known Gerasimov-Drell-Hearn (GDH) sum rule relates the anomalous magnetic moment to a weighted integral over the photo-absorption cross section. Its generalized form is extended for the virtual photon absorption at an arbitrary four momentum transfer square (Q2) and thus provides a unique relation to study the nucleon spin structure over an experimentally accessible range of Q2. The measured integrals can be compared with theoretical predictions for the spin dependent Compton amplitudes. Such experimental tests at intermediate and low Q 2 deepen our knowledge of the transition from the asymptotic freedom regime to the color confinement regime in QCD.;Experiment E97-110 has been performed at the Thomas Jefferson National Accelerator Facility to precisely measure the generalized GDH sum rule and the moments of the neutron and 3He spin structure functions in the low energy region. During the experiment, a longitudinally-polarized electron beam with energies from 1.1 to 4.4 GeV was scattered from a 3He gas target which was polarized longitudinally or transversely at the Hall A center. Inclusive asymmetries and polarized cross-section differences, as well as the unpolarized cross sections, were measured in the quasielastic and resonance regions. In this work, the 3He spin dependent structure functions of g1(nu,Q 2) and g2(nu,Q 2) at Q2 = 0.032--0.230 GeV 2 have been extracted from the experimental data, and the generalized GDH sum rule of 3He is firstly obtained for Q 2 < 0.1 GeV2. The results exhibit a "turn-over" behavior at Q2 = 0.1 GeV2, which strongly indicates that the GDH sum rule for real photons will be recovered at Q2 → 0.
机译:尽管QCD在高能量下由于渐近自由度而可以进行扰动计算而获得了成功,但关于夸克和胶子,核力以及核子质量和结构的限制,许多基本问题仍然存在。 -摄动状态。基于通用原理的色散总和规则提供了一种数据驱动的方法来研究无模型依赖性的核子结构。在这些总和规则中,众所周知的Gerasimov-Drell-Hearn(GDH)总和规则将异常磁矩与光吸收截面上的加权积分相关。它的广义形式扩展为在任意四个动量传递平方(Q2)处的虚拟光子吸收,因此提供了一种独特的关系来研究在实验上可访问的Q2范围内的核子自旋结构。可以将测得的积分与自旋相关的康普顿振幅的理论预测进行比较。在中等Q2和低Q 2的实验测试加深了我们对QCD中从渐近自由状态到颜色限制状态的过渡的了解。; E97-110实验已在Thomas Jefferson国家加速器设施中进行,以精确地测量广义GDH和规则和中子和3He自旋结构的矩在低能区起作用。在实验过程中,能量从1.1到4.4 GeV的纵向极化电子束从3He气体靶散射,该3He气体靶在Hall A中心纵向或横向极化。在准弹性和共振区域中测量了包括的不对称性和极化截面的差异,以及非极化截面。在这项工作中,从实验数据中提取了在Q2 = 0.032--0.230 GeV 2处g1(nu,Q 2)和g2(nu,Q 2)的3He自旋相关的结构函数,并得出了广义GDH和规则3对于Q 2 <0.1 GeV2首先获得He。结果在Q2 = 0.1 GeV2时表现出“翻转”行为,这强烈表明,实际光子的GDH和规则将在Q2→0时恢复。

著录项

  • 作者

    Peng, Chao.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Physics.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 227 p.
  • 总页数 227
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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