论文标题

部分可观测时空混沌系统的无模型预测

Moments for positivity: using Drell-Yan data to test positivity bounds and reverse-engineer new physics

论文作者

Li, Xu, Mimasu, Ken, Yamashita, Kimiko, Yang, Chengjie, Zhang, Cen, Zhou, Shuang-Yong

论文摘要

在标准模型有效的场理论中,在Drell-YAN过程中,Leptonic角度分布的力矩已被证明是特定类别的尺寸8尺寸,四flymion算子的敏感探针,涉及一对夸克和lept子。当需要相关的(未知)紫外线完成以遵守量子场理论的基本原理时,同一操作员也受到阳性界限。我们进行了一项现象学研究,以量化高光度LHC对这组运算符的敏感性,并扩大阳性界限。我们进一步扩展了矩的角度基础,并考虑双重差分信息,以提高解开不同操作员的能力,从而提高对新物理学的敏感性,最高为3 TEV。我们使用这些信息来探讨LHC对阳性的侵犯,以此来检验量子场理论的基本原理。最后,我们提出了一个案例研究,将我们的结果与来自其他(当前和前瞻性)实验的信息以及推断可能树级UV完成的特性的阳性锥体相结合。数据导致粒子质量和耦合的$ m/\ sqrt {g} $组合的稳健,独立于模型的下限,对于夫妇到右手lept子和/或上夸克的状态。

Moments of the leptonic angular distribution in the Drell-Yan process have recently been shown to be sensitive probes of a specific class of dimension-8, four-fermion operators in the Standard Model Effective Field Theory, involving a pair of quarks and leptons. The same operators are also subject to positivity bounds, when requiring the associated (unknown) UV completion to obey basic principles of quantum field theory. We perform a phenomenological study to quantify the sensitivity of the high-luminosity LHC to this set of operators and, by extension, the positivity bounds. We further extend the angular basis of moments and consider double differential information to improve the ability to disentangle the different operators, leading to a sensitivity to new physics scales up to 3 TeV. We use this information to explore the violation of positivity at the LHC as a way to test the underlying principles of quantum field theory. Finally, we present a case study which combines our results with information from other (current and prospective) experiments, as well as the positivity cone to infer the properties of possible tree-level UV completions. The data lead to robust, model-independent lower bounds on the $M/\sqrt{g}$ combination of the particle mass and coupling, for states that couple to right-handed leptons and/or up quarks.

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