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Beyond the Born approximation: A precise comparison of positron-proton and electron-proton elastic scattering in the CEBAF large acceptance spectrometer (CLAS).

机译:超越Born近似:CEBAF大型接受光谱仪(CLAS)中正电子-质子和电子-质子弹性散射的精确比较。

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摘要

How well we know the structure of the proton depends on our knowledge of the form factors of the proton. The ratio of the electromagnetic form factors of the proton measured by the Rosenbluth and the polarization transfer methods differ by a factor of 3 at four momentum transfer squared (Q²)=5.6 GeV². The two photon exchange (TPE) effect is the leading candidate to explain this discrepancy. The theoretical estimates of the TPE effect are model dependent so precise measurement is required to resolve this problem. The TPE effect can be measured in a model independent way by measuring the ratio of positron-proton to electron-proton elastic scattering cross-sections. We produced a simultaneously mixed electron-positron beam in the engineering test run computed in October 2006 and measured the e +p/e- p ratio using the CEBAF large acceptance spectrometer (CLAS). Due to the luminosity constraint our kinematic coverage is limited to low Q² and high epsilon (longitudinal polarization of the virtual photon). We continued our background study through GEANT4 simulation developed for the test run design in order to find more background sources and to design required shielding. The simulation is validated by using the test run data and is used further to optimize the luminosity for the final experiment. We are able to increase the luminosity by an order of magnitude for the upcoming final run. The final experiment will extend the data in high Q² and low epsilon region where TPE effect is expected to be large.
机译:我们对质子结构的了解程度取决于我们对质子形状因子的了解。通过Rosenbluth和极化转移方法测得的质子的电磁形状因子之比在四个动量转移平方(Q²)= 5.6GeV²的情况下相差3倍。两光子交换(TPE)效应是解释这种差异的主要候选者。 TPE效应的理论估计值取决于模型,因此需要精确测量才能解决此问题。可以通过测量正电子-质子与电子-质子弹性散射横截面之比,以独立于模型的方式测量TPE效应。我们在2006年10月计算出的工程测试运行中同时产生了一个混合的电子-正电子束,并使用CEBAF大接收光谱仪(CLAS)测量了e + p / e-p比。由于光度的限制,我们的运动学范围仅限于低Q²和高ε(虚拟光子的纵向极化)。我们通过为测试运行设计开发的GEANT4仿真来继续进行背景研究,以便找到更多的背景源并设计所需的屏蔽。通过使用测试运行数据对仿真进行了验证,并将其进一步用于优化最终实验的发光度。对于即将到来的最终运行,我们能够将亮度提高一个数量级。最终实验将在TPE效应较大的高Q²和低ε区域扩展数据。

著录项

  • 作者

    Niroula, Megh Raj.;

  • 作者单位

    Old Dominion University.;

  • 授予单位 Old Dominion University.;
  • 学科 Physics Nuclear.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
  • 关键词

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