Boson–Boson Interactions at the LHC

IF 9.1 2区 物理与天体物理 Q1 PHYSICS, NUCLEAR
J. Manjarrés Ramos, Guillelmo Gómez-Ceballos
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引用次数: 0

Abstract

Vector boson scattering is a key production process to probe the electroweak symmetry breaking of the Standard Model and is one of the most important topics of the physics program for the HL-LHC since it involves both self-couplings of vector bosons and their coupling with the Higgs boson. If the Higgs mechanism is not the sole source of electroweak symmetry breaking, the scattering amplitude deviates from the Standard Model prediction at high scattering energy. Moreover, deviations may be detectable even if a New Physics scale is higher than the reach of direct searches. In this review, the most recent experimental measurements of the production cross sections of vector boson pairs in association with two jets in proton–proton collisions at [Formula: see text] TeV at the LHC are reported, using data sets recorded by the ATLAS and CMS detectors. Applications to searches for New Physics, as well as prospects for measuring the electroweak vector boson scattering processes with larger data samples, are also summarized.
大型强子对撞机中的玻色子-玻色子相互作用
矢量玻色子散射是探测标准模型电弱对称性破缺的关键产生过程,是HL-LHC物理项目的重要课题之一,因为它既涉及矢量玻色子的自耦合,也涉及它们与希格斯玻色子的耦合。如果希格斯机制不是电弱对称性破缺的唯一来源,那么在高散射能量下,散射振幅会偏离标准模型的预测。此外,即使新物理尺度高于直接搜索的范围,偏差也可能被检测到。在这篇综述中,使用ATLAS和CMS探测器记录的数据集,报告了在TeV的大型强子对撞机中,与质子-质子碰撞中两个喷流相关的矢量玻色子对产生横截面的最新实验测量结果。最后总结了在寻找新物理中的应用,以及在更大数据样本下测量电弱矢量玻色子散射过程的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
21.50
自引率
0.80%
发文量
18
期刊介绍: The Annual Review of Nuclear and Particle Science is a publication that has been available since 1952. It focuses on various aspects of nuclear and particle science, including both theoretical and experimental developments. The journal covers topics such as nuclear structure, heavy ion interactions, oscillations observed in solar and atmospheric neutrinos, the physics of heavy quarks, the impact of particle and nuclear physics on astroparticle physics, and recent advancements in accelerator design and instrumentation. One significant recent change in the journal is the conversion of its current volume from gated to open access. This conversion was made possible through Annual Reviews' Subscribe to Open program. As a result, all articles published in the current volume are now freely available to the public under a CC BY license. This change allows for greater accessibility and dissemination of research in the field of nuclear and particle science.
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