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Precision Phenomenology for LHC Run II : The Standard Model and Beyond

Precision Phenomenology for LHC Run II : The Standard Model and Beyond
LHC Run II 的精密现象学:标准模型及其他模型
批准号:
1619877
负责人:
Ciaran Williams
金额:
$18.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-08-15 至 2017-06-30

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中文摘要
翻译
该奖项资助了纽约州立大学和布法罗大学的Ciaran威廉姆斯教授的研究活动。新升级的大型强子对撞机(LHC)代表了人类技术最先进和科学上最雄心勃勃的项目之一。 通过在LHC中使基本粒子以高能量相互碰撞,物理学家希望了解物质的基本组成部分及其在更高能量和更小距离下的相互作用。 大型强子对撞机刚刚开始第二次延长的数据采集期(运行II),很难想象粒子物理学中还有比这更激动人心的时刻。第二轮将测试最近发现的希格斯玻色子是否与我们目前的预期完全一致,或者它的行为方式是否超越了我们目前最好的理论。 LHC计划的另一个主要目的是寻求暗物质的微观理论,目前对暗物质的理解很少,并了解暗物质是否与更传统的物质存在任何相互作用。 因此,这一领域的研究通过促进科学在其最基本的方向之一的进步来促进国家利益: 发现和理解新的物理定律。 所有这些分析都需要精确的理论预测,以便从数据中提取有用的信息,威廉姆斯教授将沿着这些路线进行详细的分析。 具体而言,威廉姆斯教授将使用最近开发的方法进行新的计算,这将导致比以前使用的方法小得多的理论不确定性。 他的计算结果将公开发布给实验(和理论)用户,并将用于实验分析。从技术上讲,威廉姆斯教授将以仅次于领先阶数的精度进行尖端计算,并将这些结果应用到公开可用的计算机代码MCFM中。主要重点将是关键的LHC过程,如diboson生产和那些与希格斯玻色子的研究。 超越标准模型(BSM)的影响将包括在内,通常以异常耦合的形式,允许在实验分析中的应用。威廉姆斯教授还将计算矢量玻色子产生的混合QCD-EW修正,并将结果应用到MCFM中,从而改进W玻色子质量的测量,这是测试标准模型整体一致性的关键参数,从而限制了可能的新物理学。
英文摘要
This award funds the research activities of Professor Ciaran Williams at the State University of New York, University at Buffalo. The newly upgraded Large Hadron Collider (LHC) represents one of mankind's most technologically advanced and scientifically ambitious projects. By colliding elementary particles against each other at high energies at the LHC, physicists expect to learn about the fundamental building blocks of matter and their interactions at higher energies and smaller distances than have ever been previously explored. The LHC has just begun its second extended data-taking period (Run II), and it is hard to envisage a more exciting time in particle physics. Run II will test whether the recently discovered Higgs boson is fully consistent with our current expectations, or whether it behaves in ways that transcend our best current theories. Another primary aim of the LHC program is to seek a microscopic theory of Dark Matter, which is currently poorly understood, and to understand whether there exist any interactions of Dark Matter with more traditional kinds of matter. Research in this area thus advances the national interest by promoting the progress of science in one of its most fundamental directions: the discovery and understanding of new physical laws. All of these analyses require precise theoretical predictions in order to extract useful information from the data, and Professor Williams will carry out detailed analyses along these lines. Specifically, Professor Williams will perform new calculations using recently developed methods, which will result in a much smaller theoretical uncertainty than those which have previously been used. The results of his calculations will be released publicly to experimental (and theoretical) users and will be utilized in experimental analyses. More technically, Professor Williams will perform cutting edge calculations at Next-to-Next-to Leading Order accuracy and implement these results into a publicly available computer code, MCFM. The primary focus will be key LHC processes such as diboson production and those related to studies of the Higgs boson. Beyond the Standard Model (BSM) effects will be included, typically in the form of anomalous couplings, allowing for applications in experimental analyses. Prof Williams will also calculate the mixed QCD-EW corrections to vector boson production, and implement the results into MCFM, allowing for an improved measurement of the W boson mass, a crucial parameter in testing the overall consistency of the Standard Model and thereby constraining the possible new physics beyond.
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Physics at the Frontier: From Colliders to Cosmology
  • 批准号:
    2310363
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $76.5万
  • 财政年份:
    2023
  • 负责人:
    Ciaran Williams
  • 依托单位:
CAREER: Exquisite Calculations for Colliders
  • 批准号:
    1652066
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $40.0万
  • 财政年份:
    2017
  • 负责人:
    Ciaran Williams
  • 依托单位:
海外基金