论文标题
横向质量尾巴的扭曲故事
A twisted tale of the transverse-mass tail
论文作者
论文摘要
我们提出了一种诱人的可能性,即对重建的丢失动量的误解可能导致了不同对撞机实验中$ W $ - 质量的测量之间观察到的差异。我们介绍了以新物理粒子为特征的原理验证方案,可以与强子碰撞中的$ w $ boson相关,并为检测器中观察到的净缺失动量做出了贡献。我们表明,这些异国情调的事件通过了各种合作的选择标准,以相当高的速度。因此,即使存在少数事件,基于Ansatz的拟合度,缺失动量主要是由于中微子(在标准模型中发生的),产生了与其真实价值不同的$ W $ -BOSON质量。此外,最佳拟合量取决于对撞机的性质和碰撞的质量能量。我们构建了一个准骨模型,该模型可以定量地证明这种可能性,同时满足当前约束。有趣的是,我们发现新物理粒子的性质及其相互作用似乎是田间重新定义后轴突样颗粒物理学的变化。
We propose a tantalizing possibility that misinterpretation of the reconstructed missing momentum may have yielded the observed discrepancies among measurements of the $W$-mass in different collider experiments. We introduce a proof-of-principle scenario characterized by a new physics particle, which can be produced associated with the $W$-boson in hadron collisions and contributes to the net missing momentum observed in a detector. We show that these exotic events pass the selection criteria imposed by various collaborations at reasonably high rates. Consequently, in the presence of even a handful of these events, a fit based on the ansatz that the missing momentum is primarily due to neutrinos (as it happens in the Standard Model), yields a $W$-boson mass that differs from its true value. Moreover, the best fit mass depends on the nature of the collider and the center-of-mass energy of collisions. We construct a barebones model that demonstrates this possibility quantitatively while satisfying current constraints. Interestingly, we find that the nature of the new physics particle and its interactions appear as a variation of the physics of Axion-like particles after a field redefinition.