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Measurement of the neutron (helium-3) spin structure functions at low 4-momentum: A connection between the Bjorken and Gerasimov-Drell-Hearn sum rule.

机译:在低4动量下测量中子(氦3)自旋结构的功能:Bjorken与Gerasimov-Drell-Hearn和规则之间的联系。

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摘要

This dissertation presents results of experiment E94-010 performed at Jefferson Laboratory (simply known as JLab) in Hall A.; The experiment aimed to measure the low Q2 evolution of the Gerasimov-DrellHearn (GDH) integral from Q 2 = 0.1 to 0.9 GeV2. The GDH sum rule at the real photon point provides an important test of Quantum Chromodynamics (QCD). The low Q2 evolution of the GDH integral contests various resonance models, Chiral Perturbation Theory (χPT) and lattice QCD calculations, but more importantly, it helps us understand the transition between partonic and hadronic degrees of freedom. At high Q2, beyond 1 GeV2, the difference of the GDH integrals for the proton and the neutron is related to the Bjorken sum rule, another fundamental test of QCD. In addition, results of the measurements for the spin structure functions g1 and g2, cross sections, and asymmetries are presented.; E94-010 was the first experiment of its kind at JLab. It used a high-pressure, polarized 3He target with a gas pressure of 10 atm and average target polarization of 35%. For the first time, the polarized electron source delivered an average beam polarization of 70% with a beam current of 15 μA. The limit on the beam current was only imposed by the target. The experiment required six different beam energies from 0.86 to 5.1 GeV. This was the first time the accelerator ever reached 5.1 GeV. Both High-Resolution Spectrometers of Hall A, used in singles mode, were positioned at 15.5° each.
机译:本文介绍了在大厅A的杰斐逊实验室(简称JLab)进行的E94-010实验的结果;该实验旨在测量 Q 2 的Gerasimov-DrellHearn(GDH)积分的低 Q 2 演化。 = 0.1至0.9 GeV 2 。真实光子点的GDH和规则提供了量子色动力学(QCD)的重要测试。 GDH积分的低 Q 2 演化与各种共振模型,手性扰动理论(χPT)和晶格QCD计算相抗衡,但更重要的是,它有助于我们理解之间的过渡。单调和强子自由度。在 Q 2 高的情况下,超过1 GeV 2 时,质子和中子的GDH积分之差与Bjorken和规则有关,这是QCD的另一项基本测试。此外,自旋结构函数 g 1 g 2 ,横截面和出现不对称。 E94-010是JLab同类实验中的第一个。它使用了高压极化的 3 He目标,气压为10 atm,平均目标极化率为35%。极化电子源首次以15μA的束电流提供70%的平均束极化。束电流的限制仅由目标施加。该实验需要从0.86到5.1 GeV的六种不同的束能量。这是加速器有史以来第一次达到5.1 GeV。 A厅的两个高分辨率光谱仪(以单光模式使用)分别位于15.5°处。

著录项

  • 作者

    Djawotho, Pibero Kisa.;

  • 作者单位

    The College of William and Mary.;

  • 授予单位 The College of William and Mary.;
  • 学科 Physics Nuclear.; Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 p.2251
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

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