首页> 外文OA文献 >Z (gamma) + differential cross section measurements and the digital timing calibration of the level-1 calorimeter trigger cluster processor system in ATLAS
【2h】

Z (gamma) + differential cross section measurements and the digital timing calibration of the level-1 calorimeter trigger cluster processor system in ATLAS

机译:Z ( gamma )+差分截面测量和aTLas中1级量热仪触发器集群处理器系统的数字定时校准

摘要

This thesis investigates the reconstruction of (Z)((o) ({ee}))(gamma) events with the ATLAS detector at the LHC. The capabilities of the detector are explored for the initial run scenario with a proton-proton centre of mass collision energy of (sqrt{s}) = 7TeV, and an integrated luminosity of (char{cmsy10}{0x4C}) = 1 fb(^{-2}). Monte Carlo simulations are used to predict the expected precision of a differential cross-section measurement for initial state radiation (Z) + (gamma) events, both with respect to the transverse momentum of the photon, (p_T) ((gamma)), and the three body ({ee})(gamma) invariant mass. A bin-by-bin correction is used to account for the signal selection efficiency and purity, and to correct the measured (simulated) distribution back to the theoretical prediction. The main backgrounds are found to be from the final state radiation (Z) + (gamma) process, and from jets faking photons in (Z) ( o) ({ee}) events. The possible QCD multijet background is studied using a fake-rate method, and found to be negligible for the particle identification cuts used in the analysis. The main systematic uncertainties on the differential cross-section measurements are explored with Monte Carlo simulations, and found to be of a similar scale to the statistical errors for the chosen distribution binning. The three body ({ee})(gamma) invariant mass distribution was then used as the basis of an exclusion study on new particles decaying to the (Z)(({ee}))(gamma) final state. Under the assumption that the measured data agrees with the Standard Model prediction, exclusion limits were placed at 95% confidence level on the cross-section times branching ratio for a new scalar (modelled by SM Higgs process), or vector (based on a low-scale technicolor process) particle hypothesis, for particles in the mass range 200 to 900GeV. Limits of the order (char{cmsy10}{0x4f})(0.01) - (char{cmsy10}{0x4f})(0.1) pb on the cross section times branching ratios are predicted, which would improve on the equivalent limits previously calculated by the DØ experiment at the Tevatron collider, albeit in a different (sqrt{s}) region, where cross-sections will generally be higher for new massive particles. In addition to the (Z)(gamma) measurements, a digital timing calibration procedure was developed for the Cluster Processor (CP) subsystem of the level-1 calorimeter trigger. This work was essential to providing a repeatable and robust mechanism for timing in the digital processing in the CP system, a necessary ingredient for a robust and reliable trigger system; a pre-requisite of any physics analysis. This calibration procedure is described here.
机译:本文研究了在大型强子对撞机上使用ATLAS探测器重建(Z )(( to )({ee} ))( gamma )事件的过程。针对初始运行场景探索了探测器的功能,质子-质子质心碰撞能量为( sqrt {s} )= 7TeV,积分光度为( char {cmsy10} {0x4C} )= 1 fb (^ {-2} )。蒙特卡罗模拟用于预测初始状态辐射(Z )+ (γ)事件的差分横截面测量的预期精度,这两个方面都相对于光子的横向动量(p_T )(( gamma ))和三个物体({ee} )( gamma )不变质量。一个接一个接一个的校正用于考虑信号选择的效率和纯度,并将测量的(模拟的)分布校正回理论预测值。发现主要背景来自最终状态辐射(Z )+ ( gamma )过程,以及来自伪造(Z )( to )({ee} )中光子的射流事件。使用假速率方法研究了可能的QCD多喷嘴背景,并且对于分析中使用的颗粒识别切割而言可以忽略不计。利用蒙特卡洛模拟探索了差分横截面测量的主要系统不确定性,发现其与所选分布分区的统计误差具有相似的范围。然后,将三体({ee} )( gamma )不变质量分布用作排除研究新粒子衰减到(Z )(({ee} ))的基础。 ( gamma )最终状态。在假设测量数据与标准模型预测相符的假设下,将排除限设置在横截面乘以新标量(由SM Higgs过程建模)或矢量(基于低标量)的分支比率的95%置信水平上。质量技术过程)粒子假设,适用于质量范围为200至900GeV的粒子。预测横截面时间( char {cmsy10} {0x4f} )(0.01)-( char {cmsy10} {0x4f} )(0.1)pb的极限时,分支比会有所提高Tevatron对撞机先前由DØ实验计算出的等效极限,尽管在不同的( sqrt {s} )区域中,新的大颗粒的横截面通常会更高。除了(Z )( gamma )测量之外,还为1级量热仪触发器的群集处理器(CP)子系统开发了一种数字定时校准程序。这项工作对于在CP系统中为数字处理提供定时的可重复性和鲁棒性机制至关重要,而鲁棒性和可靠性是触发系统的必要组成部分。任何物理分析的先决条件。此处介绍此校准过程。

著录项

  • 作者

    Lilley Joseph Neil;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号