Precision flavour analyses for the era of the high-luminosity LHC and beyond
Precision flavour analyses for the era of the high-luminosity LHC and beyond
批准号:
ST/V003941/1
负责人:
Danny Van Dyk
金额:
$67.63万
依托单位:
依托单位国家:
英国
项目类别:
Fellowship
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
粒子物理学研究物质的基本成分及其相互作用的性质。我们目前对这些成分和相互作用的理解包含在一个严格的理论描述中:粒子物理学标准模型。虽然标准模型在描述迄今为止的大多数现象方面非常成功,但它有许多缺点,无法解释各种观测结果。因此,人们普遍认为标准模型需要被取代,但首要问题是:什么是取代?我的研究有助于回答这个问题,通过研究一个所谓的底夸克衰变成一个奇怪的夸克,并发射一个电子-正电子对,衰变类型为B->sl+l-。这种类型的衰变是一个很有希望的候选人,改变我们对自然的理解,并修改标准模型,因为理论预测和实验测量之间存在有趣和长期的差异。英国实验粒子物理学的研究人员正在努力改进这种测量。衰变中涉及的两种夸克物种或“味道”在日常生活中并不存在,但它们在世界上最大的粒子物理实验--欧洲核子研究中心的大型强子对撞机--的高能粒子碰撞中大量产生。大型强子对撞机的实验继续以前所未有的精度测量这些衰变。我们目前对B->sl+l-衰变的理论描述具有很大的和难以量化的不确定性。这些都妨碍了对理论和更精确的实验之间目前的差异作出清楚而明确的解释。它们是超越SM的互动的第一个真正迹象吗?它们是尚未被发现的高能物质成分的印记吗?为了回答这些问题,理论方面必须与实验努力同步改进。我的研究将通过减少理论的不确定性来改进理论方面,使新类型物质或衰变中相互作用的发现可以用现有数据证实或反驳。为此,我将使用各种数学和统计工具,并将使用其他类型的底夸克衰变的数据来磨练我的预测的准确性。
英文摘要
Particle Physics investigates the fundamental constituents of matter and the nature of their interactions. Our present understanding of these constituents and interactions is contained in a rigorous theoretical description: the Standard Model of Particle Physics. While the Standard Model is very successful in describing most phenomena to date, it has a number of shortcomings and fails to explain a variety of observations. It is therefore generally accepted that the Standard Model needs replacing, but the overarching question is: what is the replacement?My research contributes to answering this question by investigating the rare decay of a so-called bottom quark into a strange quark with the emission of an electron-positron pair, a decay of the type b->sl+l-. This type of decay is a promising candidate to change our understanding of Nature and to revise the Standard Model due to intriguing and long-standing discrepancies between theoretical predictions and experimental measurements. UK researchers in experimental particle physics are leading the effort to improve such measurements.. The two quarks species or "flavours" involved in the decay are absent in everyday life,but they are abundantly produced in highly-energetic particle collisions at the world's largest Particle Physics experiment, CERN's Large Hadron Collider. The Large Hadron Collider experiments continue to measure these decays with unprecedented precision.Our current theoretical description of the b->sl+l- decay comes with large and hard-to-quantify uncertainties. These hamper a clear and unambiguous interpretation of the present discrepancies between theory and ever more precise experiment. Are they a first genuine sign of interactions beyond the SM? Are they the imprint of energetic yet-undiscovered constituents of matter? To answer these questions, it is mandatory that the theory side improves in lockstep with the experimental endeavours. My research will improve the theory side by reducing the theoretical uncertainties to the extent that a discovery of new types of matter or interactions in the decay can either be confirmed or refuted with present data. To this end, I will use a variety of mathematical and statistical tools, and I will use data on other types of bottom quark decay to hone the accuracy of my predictions.
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DOI:
10.1140/epjc/s10052-023-12294-0
发表时间:
2023-09
期刊:
The European Physical Journal C
影响因子:
--
作者:
[A. Beck;M. Reboud;D. van Dyk]
通讯作者:
A. Beck;M. Reboud;D. van Dyk
DOI:
10.1007/jhep11(2023)082
发表时间:
2023
期刊:
Journal of High Energy Physics
影响因子:
5.4
作者:
[Bolognani C]
通讯作者:
Bolognani C
Resolving the flavor structure in the MFV-SMEFT
解析 MFV-SMEFT 中的风味结构
DOI:
10.1007/jhep02(2023)225
发表时间:
2023
期刊:
JHEP
影响因子:
--
作者:
[Bruggisser Sebastian]
通讯作者:
Bruggisser Sebastian
Dispersion relations for $B^- \to \ell^- \bar?_\ell \ell^{\prime-} \ell^{\prime+}$ form factors
$B^- o ell^- ar?_ell ell^{prime-} ell^{prime }$ 形状系数的色散关系
DOI:
10.48550/arxiv.2210.09832
发表时间:
2022
期刊:
影响因子:
--
作者:
[Kürten S]
通讯作者:
Kürten S
Dispersive Analysis of $B\to K^{(*)}$ and $B_s\to ?$ Form Factors
$B o K^{(*)}$ 和 $B_s o ?$ 外形尺寸的色散分析
DOI:
10.48550/arxiv.2305.06301
发表时间:
2023
期刊:
影响因子:
--
作者:
[Gubernari N]
通讯作者:
Gubernari N
共 6 条
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