Measurement of the W boson mass with LHCb
用 LHCb 测量 W 玻色子质量
基本信息
- 批准号:1937404
- 负责人:
- 金额:--
- 依托单位:
- 依托单位国家:英国
- 项目类别:Studentship
- 财政年份:2017
- 资助国家:英国
- 起止时间:2017 至 无数据
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
This project aims to make the first ever measurement of the W boson mass using the LHCb experiment at the CERN Large Hadron Collider. It is universally accepted that there must be new matter species and forces beyond those of the Standard Model. One of the most powerful discovery approaches is to confront the precisely calculable relations between the fundamental parameters of the SM. A global fit of the electroweak parameters is highly sensitive to possible effects of heavy new particles in quantum loops. The sensitivity of this test is currently limited by the precision with which the W boson mass has been measured. It is therefore of paramount importance that the W mass is measured more precisely. The most precise measurements of the W mass to date come from the CDF and D0 experiments at the Fermilab Tevatron proton antiproton collider. Measurements are underway with the ATLAS and CMS experiments, with ATLAS having released their first analysis in December 2016. This measurement has an uncertainty of 19 MeV, of which 14 MeV is attributed to the modelling of W boson production. LHCb is yet to be exploited in the measurement of the W mass, but could play a very important role in the ultimate precision in the W mass, due to its unique angular coverage. Unlike the other detectors which cover wide angle particle production, LHCb focusses on small angles with respect to the colliding proton beams. This means that many systematic uncertainties, especially those related to W boson production modelling, will be orthogonal to, or in some cases anti-correlated with, those of ATLAS and CMS. LHCb already has a vast dataset with several million leptonic W boson decays, and its full Run-II dataset will have been recorded by midway through the studentship. This dataset will allow a measurement with a statistical uncertainty of around 10 MeV. LHCb is well suited to the study of muonic W decays, thanks to its excellent charged particle tracking, and muon identification capabilities. However, the unique design of LHCb means that different challenges will face this measurement, compared to those of ATLAS and CMS. This will require novel new approaches, for example to control the level of background, and to model W boson production in the small-angle region covered by LHCb. One of the first objectives will be to precisely study Z boson production in the LHCb region, and to compare measured distributions with state-of-the-art theoretical models. The accuracy of these models is central to the goal of measuring the W mass. That is because the kinematic distributions of the charged lepton from leptonic W decays must be compared with templates from these tools, in order to extract the W mass. The Z data will be critical in this regard.This promises to be a very exciting research project, with potential for a high impact on the sensitivity of precision null tests of the Standard Model.
该项目旨在利用CERN大型强子对撞机上的LHCb实验首次测量W玻色子的质量。人们普遍认为,在标准模型之外,一定会有新的物质种类和力。最有效的发现方法之一是正视SM的基本参数之间的精确可计算关系。电弱参数的全局拟合对量子环中重的新粒子可能产生的影响高度敏感。这项测试的灵敏度目前受到测量W玻色子质量的精度的限制。因此,更精确地测量W质量是至关重要的。迄今为止,对W质量最精确的测量来自费米实验室Tevatron质子反质子对撞机上的CDF和D0实验。ATLAS和CMS的实验正在进行测量,ATLAS在2016年12月发布了他们的第一份分析报告。这项测量的不确定度为19 MeV,其中14 MeV归因于W玻色子产生的模型。LHCb在W质量的测量中还有待开发,但由于其独特的角覆盖,它可以在W质量的最终精度方面发挥非常重要的作用。与其他覆盖广角粒子产生的探测器不同,LHCb聚焦于相对于碰撞的质子束的小角度。这意味着许多系统不确定性,特别是那些与W玻色子产生模型有关的不确定性,将与ATLAS和CMS的不确定性垂直,或者在某些情况下与之反相关。LHCB已经有了一个包含数百万轻子W玻色子衰变的庞大数据集,其完整的RUN-II数据集将在学生生涯中途被记录下来。这一数据集将允许测量具有大约10 MeV的统计不确定度。LHCb由于其出色的带电粒子跟踪和介子识别能力,非常适合于研究介子W衰变。然而,LHCb的独特设计意味着,与ATLAS和CMS相比,这一测量将面临不同的挑战。这将需要新的新方法,例如控制背景水平,并在LHCb覆盖的小角度区域模拟W玻色子的产生。第一个目标之一将是精确地研究LHCb区的Z玻色子产生,并将测量的分布与最先进的理论模型进行比较。这些模型的精确度对于测量W质量的目标至关重要。这是因为轻子W衰变的带电轻子的运动学分布必须与这些工具的模板进行比较,才能提取W质量。Z数据在这方面将是至关重要的。这将是一个非常令人兴奋的研究项目,有可能对标准模型的精度零测试的敏感性产生很大的影响。
项目成果
期刊论文数量(2)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
Understanding and constraining the PDF uncertainties in a W boson mass measurement with forward muons at the LHC
- DOI:10.1140/epjc/s10052-019-6997-8
- 发表时间:2019-02
- 期刊:
- 影响因子:0
- 作者:S. Farry;O. Lupton;M. Pili;M. Vesterinen
- 通讯作者:S. Farry;O. Lupton;M. Pili;M. Vesterinen
Towards a W boson mass measurement with LHCb
利用 LHCb 进行 W 玻色子质量测量
- DOI:10.22323/1.352.0131
- 发表时间:2019
- 期刊:
- 影响因子:0
- 作者:Pili M
- 通讯作者:Pili M
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其他文献
吉治仁志 他: "トランスジェニックマウスによるTIMP-1の線維化促進機序"最新医学. 55. 1781-1787 (2000)
Hitoshi Yoshiji 等:“转基因小鼠中 TIMP-1 的促纤维化机制”现代医学 55. 1781-1787 (2000)。
- DOI:
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- 影响因子:0
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LiDAR Implementations for Autonomous Vehicle Applications
- DOI:
- 发表时间:
2021 - 期刊:
- 影响因子:0
- 作者:
- 通讯作者:
吉治仁志 他: "イラスト医学&サイエンスシリーズ血管の分子医学"羊土社(渋谷正史編). 125 (2000)
Hitoshi Yoshiji 等人:“血管医学与科学系列分子医学图解”Yodosha(涉谷正志编辑)125(2000)。
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Effect of manidipine hydrochloride,a calcium antagonist,on isoproterenol-induced left ventricular hypertrophy: "Yoshiyama,M.,Takeuchi,K.,Kim,S.,Hanatani,A.,Omura,T.,Toda,I.,Akioka,K.,Teragaki,M.,Iwao,H.and Yoshikawa,J." Jpn Circ J. 62(1). 47-52 (1998)
钙拮抗剂盐酸马尼地平对异丙肾上腺素引起的左心室肥厚的影响:“Yoshiyama,M.,Takeuchi,K.,Kim,S.,Hanatani,A.,Omura,T.,Toda,I.,Akioka,
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