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arXiv:1909.02101·v1·High Energy Physics — Phenomenology

Correlating to hadronic decays via flavour symmetry

Andreas Crivellin🇨🇭 · Christian Gross🇮🇹 · Stefan Pokorski🇵🇱 · Leonardo Vernazza🇳🇱

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Abstract

There are strong similarities between charge-parity (CP) violating observables in hadronic decays (in particular in ) and direct CP violation in Kaon decays (): All these observables are very sensitive to new physics (NP) which is at the same time CP and isospin violating (i.e. NP with complex couplings which are different for up quarks and down quarks). Intriguingly, both the measurements of and show deviations from their Standard Model predictions, calling for a common explanation (the latter is known as the puzzle). For addressing this point, we parametrize NP using a gauge invariant effective field theory approach combined with a global flavor symmetry in the quark sector (also known as less-minimal flavour violation). We first determine the operators which can provide a common explanation of and and then perform a global fit of their Wilson coefficients to the data from hadronic decays. Here we also include e.g. the recently measured CP asymmetry in as well as the purely isospin violating decay , finding a consistent NP pattern providing a very good fit to data. Furthermore, we can at the same time explain for natural values of the free parameters within our flavour approach, and this symmetry gives interesting predictions for hadronic decays involving transitions.

Comments: 8 pages

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