论文标题

LHC的辐射风味模板:Lepton非宇宙和G-2

The Radiative Flavor Template at the LHC: Lepton non-universality and g-2

论文作者

Cacciapaglia, Giacomo, Cagnotta, Antimo, Calabrese, Roberta, Carnevali, Francesco, De Iorio, Agostino, Iorio, Alberto Orso Maria, Morisi, Stefano, Sannino, Francesco

论文摘要

粒子物理的标准模型及其对自然的描述最近受到通过不同的加速器机进行的一系列精确测量的挑战。在测量MUON磁动量时,并且在推断出W玻色子的质量时,在重内森物理部门中出现了具有统计学意义的异常。在这里,我们考虑的标准模型的辐射扩展为充分的用途,以调和各种实验结果,同时进一步预测了在TEV能量量表中具有质谱的新玻色子和费米子的存在。因此,所得的光谱是在CERN的LHC实验的质子 - 蛋白碰撞碰撞的能量范围内。此处研究的模型允许在标准模型的复合材料和基本扩展之间进行插值,重点是一个新的修改的Yukawa扇区,该部门需要容纳异常。为了关注该模型的辐射状态,我们引入了对ATLA和CMS实验程序的即时影响的有趣搜索通道,例如具有无形或长寿命颗粒的标准模型粒子的关联生产。我们进一步展示了如何适应新物理学的早期苏米动机搜索者,以限制新标量和费米子的频谱和耦合。总体而言,新的物理模板同时说明了观察到的实验异常的大部分,同时暗示了与当前LHC实验相关的广泛实验特征。

The Standard Model of Particle Physics and its description of Nature have been recently challenged by a series of precision measurements performed via different accelerator machines. Statistically significant anomalies emerged in the heavy meson physics sector, when measuring the muon magnetic momentum, and very recently when deducing the mass of the W boson. Here we consider a radiative extension of the Standard Model devised to be sufficiently versatile to reconcile the various experimental results while further predicting the existence of new bosons and fermions with a mass spectrum in the TeV energy scale. The resulting spectrum is, therefore, within the energy reach of the proton-proton collisions at the LHC experiments at CERN. The model investigated here allows to interpolate between composite and elementary extensions of the Standard Model with emphasis on a new modified Yukawa sector that is needed to accommodate the anomalies. Focusing on the radiative regime of the model, we introduce interesting search channels of immediate impact for the ATLAS and CMS experimental programs such as the associate production of Standard Model particles with either invisible or long-lived particles. We further show how to adapt earlier SUSY-motivated searchers of new physics to constrain the spectrum and couplings of the new scalars and fermions. Overall, the new physics template simultaneously accounts for the bulk of the observed experimental anomalies while suggesting a wide spectrum of experimental signatures relevant for the current LHC experiments.

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