论文标题

局部局部关于Electroweak Precision Physics的报告,并限制了2021年雪人的新物理

Report of the Topical Group on Electroweak Precision Physics and Constraining New Physics for Snowmass 2021

论文作者

Belloni, Alberto, Freitas, Ayres, Tian, Junping, Apyan, Juan Alcaraz Maestre Aram, Azartash-Namin, Bianca, Azzurri, Paolo, Banerjee, Swagato, Beyer, Jakob, Bhattacharya, Saptaparna, de Blas, Jorge, Blondel, Alain, Britzger, Daniel, Dam, Mogens, Du, Yong, d'Enterria, David, Fujii, Keisuke, Grojean, Christophe, Gu, Jiayin, Han, Tao, Hildreth, Michael, Irles, Adrián, Janot, Patrick, Jeans, Daniel, Kawale, Mayuri, Khoda, Elham E, Lane, Samuel, Lewis, Ian, Liang, Zhijun, List, Jenny, Liu, Zhen, Ma, Yang, Miralles, Victor, Mizuno, Takahiro, Mwewa, Chilufya, Narain, Meenakshi, Nedic, Luka, Neubauer, Mark S., Paranjape, Chaitanya, Peskin, Michael, Petti, Roberto, Pleier, Marc-André, Poeschl, Roman, Potamianos, Karolos, Reina, Laura, Reuter, Jürgen, Robens, Tania, Roloff, Philipp, Roney, Michael, Ruan, Manqi, Ruiz, Richard, Schuy, Alex, Shepherd, William, Stolarski, Daniel, Stupak, John, Suehara, Taikan, Tenchini, Roberto, Tricoli, Alessandro, Vryonidou, Eleni, Vos, Marcel, Waits, Connor, Wilson, Graham, Wu, Yongcheng, Xie, Keping, Yang, Siqi, Yang, Tianyi, Yumino, Keita, Zhou, Shuang-Yong, Zhu, Junjie

论文摘要

物理学可观察物的精确测量及其在标准模型(SM)中的一致性的测试是一种宝贵的方法,可以通过直接搜索新粒子进行补充,以确定超出标准模型(BSM)以外的物理学的存在。大规模电动仪表玻色子(W和Z玻色子)的研究是间接BSM搜索的有希望的目标,因为光子和胶子的相互作用受到不间断的仪表对称性的强烈限制。它们可以分为两类:(a)由s-或t渠道w/z玻色子(也称为electroweak Precision测量值)介导的费米管散射过程; (b)多玻色子过程,其中包括在费米亚抗药灭绝中生产两个或多个矢量玻色子,以及载体玻色子散射(VBS)过程。后一种类别可以测试仪表孔自我互动的修改,并且敏感性通常随着碰撞能量的增加而提高。 该报告评估了一系列未来实验的可实现精度,这些实验取决于收集的数据样本,实验和理论系统不确定性及其相关性的统计数据。此外,在标准模型有效现场理论(SMEFT)框架中,它还对这些结果进行了对这些结果的综合解释,以及在HIGGS和顶级部门中的类似研究。该框架提供了与模型无关的处方,可在新物理学上构成通用约束,并研究和结合大量实验性可观察物,假设新的物理量表明显高于EW量表。

The precise measurement of physics observables and the test of their consistency within the standard model (SM) are an invaluable approach, complemented by direct searches for new particles, to determine the existence of physics beyond the standard model (BSM). Studies of massive electroweak gauge bosons (W and Z bosons) are a promising target for indirect BSM searches, since the interactions of photons and gluons are strongly constrained by the unbroken gauge symmetries. They can be divided into two categories: (a) Fermion scattering processes mediated by s- or t-channel W/Z bosons, also known as electroweak precision measurements; and (b) multi-boson processes, which include production of two or more vector bosons in fermion-antifermion annihilation, as well as vector boson scattering (VBS) processes. The latter categories can test modifications of gauge-boson self-interactions, and the sensitivity is typically improved with increased collision energy. This report evaluates the achievable precision of a range of future experiments, which depend on the statistics of the collected data sample, the experimental and theoretical systematic uncertainties, and their correlations. In addition it presents a combined interpretation of these results, together with similar studies in the Higgs and top sector, in the Standard Model effective field theory (SMEFT) framework. This framework provides a model-independent prescription to put generic constraints on new physics and to study and combine large sets of experimental observables, assuming that the new physics scales are significantly higher than the EW scale.

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