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Determination of electron beam polarization using electron detector in Compton polarimeter with less than 1% statistical and systematic uncertainty.

机译:使用康普顿旋光仪中的电子检测器测定电子束极化,统计和系统不确定度均小于1%。

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摘要

The Q-weak experiment aims to measure the weak charge of proton with a precision of 4.2%. The proposed precision on weak charge required a 2.5% measurement of the parity violating asymmetry in elastic electron - proton scattering. Polarimetry was the largest experimental contribution to this uncertainty and a new Compton polarimeter was installed in Hall C at Jefferson Lab to make the goal achievable.;In this polarimeter the electron beam collides with green laser light in a low gain Fabry-Perot Cavity; the scattered electrons are detected in 4 planes of a novel diamond micro strip detector while the back scattered photons are detected in lead tungstate crystals. This diamond micro-strip detector is the first such device to be used as a tracking detector in a nuclear and particle physics experiment. The diamond detectors are read out using custom built electronic modules that include a preamplifier, a pulse shaping amplifier and a discriminator for each detector micro-strip. We use field programmable gate array based general purpose logic modules for event selection and histogramming. Extensive Monte Carlo simulations and data acquisition simulations were performed to estimate the systematic uncertainties. Additionally, the Moller and Compton polarimeters were cross calibrated at low electron beam currents using a series of interleaved measurements. In this dissertation, we describe all the subsystems of the Compton polarimeter with emphasis on the electron detector. We focus on the FPGA based data acquisition system built by the author and the data analysis methods implemented by the author. The simulations of the data acquisition and the polarimeter that helped rigorously establish the systematic uncertainties of the polarimeter are also elaborated, resulting in the first sub 1% measurement of low energy (~1GeV) electron beam polarization with a Compton electron detector. We have demonstrated that diamond based micro-strip detectors can be used for tracking in a high radiation environment and it has enabled us to achieve the desired precision in the measurement of the electron beam polarization which in turn has allowed the most precise determination of the weak charge of the proton.
机译:Q弱实验旨在以4.2%的精度测量质子的弱电荷。提议的弱电荷精度要求对弹性电子-质子散射中违反不对称性的奇偶性进行2.5%的测量。偏振法是造成这种不确定性的最大实验因素,并且在杰斐逊实验室的C厅安装了新的康普顿偏振计以实现该目标。在这种偏振计中,电子束在低增益Fabry-Perot腔中与绿色激光碰撞。在新型金刚石微带检测器的4个平面中检测到散射电子,而在钨酸铅晶体中检测到了反向散射光子。这种金刚石微带探测器是第一个在核和粒子物理实验中用作跟踪探测器的装置。钻石探测器使用定制的电子模块读取,该模块包括用于每个探测器微带的前置放大器,脉冲整形放大器和鉴别器。我们使用基于现场可编程门阵列的通用逻辑模块进行事件选择和直方图绘制。进行了广泛的蒙特卡洛模拟和数据采集模拟以估计系统不确定性。另外,使用一系列交错测量在低电子束电流下交叉校准了Moller和Compton旋光仪。本文以电子检测器为重点,介绍了康普顿旋光仪的所有子系统。我们专注于作者构建的基于FPGA的数据采集系统和作者实现的数据分析方法。还详细阐述了有助于严格确定旋光仪系统不确定性的数据采集和旋光仪的仿真,从而首次使用康普顿电子探测器对低能(〜1GeV)电子束极化进行了不足1%的测量。我们已经证明基于金刚石的微带检测器可用于在高辐射环境中进行跟踪,它使我们能够在电子束极化的测量中达到所需的精度,从而可以最精确地确定弱质子的电荷。

著录项

  • 作者

    Narayan, Amrendra.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Physics.;Radiation.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 274 p.
  • 总页数 274
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:51

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