论文标题
重新访问$ \ mathbf {vh(\ rightarrow b \ bar b)} $在LHC和FCC-HH
Revisiting $\mathbf{Vh(\rightarrow b \bar b)}$ at the LHC and FCC-hh
论文作者
论文摘要
Diboson的生产过程为目前和将来的强子山脉提供了良好的目标测量。我们考虑$ VH $生产,重点关注$ h \ to b \ bar b $衰减频道,其较大的横截面使其可在LHC访问。我们通过将0-,1和2-Lepton频道与比例不变的$ b $ tagrating算法相结合,可以进行改进的分析,从而使我们能够通过大众滴定标签或解决的$ b $ jets通过增强的希格斯来利用事件。该策略对4个尺寸-6 SMEFT运算符的敏感性将修改$ W $和$ Z $耦合的Quarks的敏感性与从Global Fits获得的界限具有竞争力。 $ h \对B \ b $衰减频道的好处是,它是LHC Run 3和HL-LHC上唯一可访问的$ VH $频道,而在FCC-HH,它与有效的背景$ H \ toγγ$频道具有竞争力,假设$ \ flows $ \ flow systys $ \ sysemsim 5 $%的系统不确定。仅相对于LHC运行3的Wilson系数,相对于仅增强的类别而言,最强的Wilson系数将提高到最强的Wilson系数(在FCC-HH的7%提高)中,提高了17%。我们还表明,在FCC-HH,$ VH $系统迅速的汇总可以显着降低某些EFT操作员之间的相关性。我们获得的界限分别转化为新物理量表$ 5 $,$ 8 $和$ 20 $ TEV的下限,分别是LHC Run 3,HL-LHC和FCC-HH,假设订单Unity的新物理耦合。最后,我们评估了$ VH $生产渠道对异常三量规耦合测量的影响,以及它们在Lepton Colliders的确定。
Diboson production processes provide good targets for precision measurements at present and future hadron colliders. We consider $Vh$ production, focusing on the $h \to b\bar b$ decay channel, whose sizeable cross section makes it accessible at the LHC. We perform an improved analysis by combining the 0-, 1- and 2-lepton channels with a scale-invariant $b$-tagging algorithm that allows us to exploit events with either a boosted Higgs via mass-drop tagging or resolved $b$-jets. This strategy gives sensitivity to 4 dimension-6 SMEFT operators that modify the $W$ and $Z$ couplings to quarks and is competitive with the bounds obtained from global fits. The benefit of the $h\to b\bar b$ decay channel is the fact that it is the only $Vh$ channel accessible at the LHC Run 3 and HL-LHC, while at FCC-hh it is competitive with the effectively background-free $h\to γγ$ channel assuming $\lesssim 5$% systematic uncertainty. Combining the boosted and resolved categories yields a 17% improvement on the most strongly bounded Wilson coefficient at the LHC Run 3 with respect to the boosted category alone (and a 7% improvement at FCC-hh). We also show that, at FCC-hh, a binning in the rapidity of the $Vh$ system can significantly reduce correlations between some EFT operators. The bounds we obtain translate to a lower bound on the new physics scale of $5$, $8$, and $20$ TeV at the LHC Run 3, HL-LHC, and FCC-hh respectively, assuming new-physics couplings of order unity. Finally, we assess the impact of the $Vh$ production channel on anomalous triple gauge coupling measurements, comparing with their determination at lepton colliders.