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CMS physics technical design report, volume II: Physics performance

机译:CMS物理技术设计报告,第二卷:物理性能

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摘要

CMS is a general purpose experiment, designed to study the physics of pp collisions at 14 TeV at the Large Hadron Collider (LHC). It currently involves more than 2000 physicists from more than 150 institutes and 37 countries. The LHC will provide extraordinary opportunities for particle physics based on its unprecedented collision energy and luminosity when it begins operation in 2007. The principal aim of this report is to present the strategy of CMS to explore the rich physics programme offered by the LHC. This volume demonstrates the physics capability of the CMS experiment. The prime goals of CMS are to explore physics at the TeV scale and to study the mechanism of electroweak symmetry breaking - through the discovery of the Higgs particle or otherwise. To carry out this task, CMS must be prepared to search for new particles, such as the Higgs boson or supersymmetric partners of the Standard Model particles, from the start-up of the LHC since new physics at the TeV scale may manifest itself with modest data samples of the order of a few fb-1 or less. The analysis tools that have been developed are applied to study in great detail and with all the methodology of performing an analysis on CMS data specific benchmark processes upon which to gauge the performance of CMS. These processes cover several Higgs boson decay channels, the production and decay of new particles such as Z′ and supersymmetric particles, Bs production and processes in heavy ion collisions. The simulation of these benchmark processes includes subtle effects such as possible detector miscalibration and misalignment. Besides these benchmark processes, the physics reach of CMS is studied for a large number of signatures arising in the Standard Model and also in theories beyond the Standard Model for integrated luminosities ranging from 1 fb-1 to 30 fb-1. The Standard Model processes include QCD, B-physics, diffraction, detailed studies of the top quark properties, and electroweak physics topics such as the W and Z0 boson properties. The production and decay of the Higgs particle is studied for many observable decays, and the precision with which the Higgs boson properties can be derived is determined. About ten different supersymmetry benchmark points are analysed using full simulation. The CMS discovery reach is evaluated in the SUSY parameter space covering a large variety of decay signatures. Furthermore, the discovery reach for a plethora of alternative models for new physics is explored, notably extra dimensions, new vector boson high mass states, little Higgs models, technicolour and others. Methods to discriminate between models have been investigated. This report is organized as follows. Chapter 1, the Introduction, describes the context of this document. Chapters 2-6 describe examples of full analyses, with photons, electrons, muons, jets, missing E T, B-mesons and τ's, and for quarkonia in heavy ion collisions. Chapters 7-15 describe the physics reach for Standard Model processes, Higgs discovery and searches for new physics beyond the Standard Model.
机译:CMS是一项通用实验,旨在研究大型强子对撞机(LHC)在14 TeV时pp碰撞的物理过程。目前,它涉及来自37个国家的150多个研究所的2000多名物理学家。大型强子对撞机将于2007年开始运行,其空前的碰撞能量和光度将为粒子物理学提供非凡的机遇。本报告的主要目的是提出CMS探索大型强子对撞机提供的丰富物理程序的策略。本书展示了CMS实验的物理能力。 CMS的主要目标是在TeV尺度上探索物理学,并通过发现希格斯粒子或其他方式研究电弱对称性破坏的机理。为了执行此任务,CMS必须准备好从大型强子对撞机的诞生开始寻找新粒子,例如希格斯玻色子或标准模型粒子的超对称伴侣,因为TeV尺度的新物理学可能会适度地表现出来。几fb-1或更小的数据样本。已开发的分析工具可用于进行详细研究,并具有对CMS数据特定基准过程进行分析的所有方法,以此来评估CMS的性能。这些过程涵盖了多个希格斯玻色子衰变通道,Z'和超对称颗粒等新粒子的产生和衰变,重离子碰撞中Bs的产生和过程。这些基准过程的仿真包括细微的影响,例如可能的检测器失准和失准。除了这些基准过程外,还针对CMS的物理影响力进行了研究,以研究标准模型中出现的大量特征,以及超出标准模型的理论中1fb-1至30fb-1的综合光度。标准模型过程包括QCD,B物理,衍射,对顶级夸克性质的详细研究以及电弱物理主题(例如W和Z0玻色子性质)。对于许多可观察到的衰变,研究了希格斯粒子的产生和衰变,并确定了可以推导希格斯玻色子性质的精度。使用完全仿真分析了大约十个不同的超对称基准点。在SUSY参数空间中评估CMS发现范围,该参数空间涵盖了各种衰变特征。此外,还探索了许多新物理替代模型的发现范围,特别是额外的维数,新的矢量玻色子高质量状态,小希格斯模型,彩色染料等。已经研究了区分模型的方法。该报告组织如下。第1章,简介,介绍了本文档的内容。第2-6章介绍了完整分析的示例,包括光子,电子,μ子,射流,E T,B介子和τ的缺失以及重离子碰撞中的夸克尼亚。第7-15章描述了标准模型过程的物理影响,希格斯发现以及寻找标准模型之外的新物理。

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