Partial compositeness is a key ingredient of models where the electroweak symmetry is broken by a composite Higgs state. Recently, a UV completion of partial compositeness was proposed, featuring a new, strongly coupled gauge interaction as well as new fundamental fermions and scalars. We work out the full flavor structure of the minimal realization of this idea and investigate in detail the consequences for flavor physics. While CP violation in kaon mixing represents a significant constraint on the model, we find many viable parameter points passing all precision tests. We also demonstrate that the recently observed hints for a violation of lepton flavor universality in B→K(∗) decays can be accommodated by the model, while the anomalies in B→D(∗)τν cannot be explained while satisfying constraints on Z couplings from measurements at the Large Electron-Positron Collider.
Flavor physics and flavor anomalies in minimal fundamental partial compositeness / Sannino, F.; Stangl, P.; Straub, D. M.; Thomsen, A. E.. - In: PHYSICAL REVIEW D. - ISSN 2470-0010. - 97:11(2018). [10.1103/PhysRevD.97.115046]
Flavor physics and flavor anomalies in minimal fundamental partial compositeness
Sannino F.;
2018
Abstract
Partial compositeness is a key ingredient of models where the electroweak symmetry is broken by a composite Higgs state. Recently, a UV completion of partial compositeness was proposed, featuring a new, strongly coupled gauge interaction as well as new fundamental fermions and scalars. We work out the full flavor structure of the minimal realization of this idea and investigate in detail the consequences for flavor physics. While CP violation in kaon mixing represents a significant constraint on the model, we find many viable parameter points passing all precision tests. We also demonstrate that the recently observed hints for a violation of lepton flavor universality in B→K(∗) decays can be accommodated by the model, while the anomalies in B→D(∗)τν cannot be explained while satisfying constraints on Z couplings from measurements at the Large Electron-Positron Collider.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.