English

Weak annihilation and new physics in charmless $B \to M M$ decays

High Energy Physics - Phenomenology 2014-09-12 v1

Abstract

We use currently available data of nonleptonic charmless 2-body BMMB\to MM decays (MM=PP,PV,VVMM = PP, PV, VV) that are mediated by b(d,s)b\to (d, s) QCD- and QED-penguin operators to study weak annihilation and new-physics effects in the framework of QCD factorization. In particular we introduce one weak annihilation parameter for decays related by (udu \leftrightarrow d) quark interchange and test this universality assumption. Within the standard model, the data supports this assumption with the only exceptions in the BKπB\to K \pi system, which exhibits the well-known "ΔACP\Delta A_{CP} puzzle", and some tensions in BKϕB \to K^* \phi. Beyond the standard model, we simultaneously determine weak-annihilation and new-physics parameters from data, employing model-independent scenarios that address the "ΔACP\Delta A_{CP} puzzle", such as QED-penguins and bsuˉub\to s \bar{u}u current-current operators. We discuss also possibilities that allow further tests of our assumption once improved measurements from LHCb and Belle II become available.

Keywords

Cite

@article{arxiv.1409.3252,
  title  = {Weak annihilation and new physics in charmless $B \to M M$ decays},
  author = {Christoph Bobeth and Martin Gorbahn and Stefan Vickers},
  journal= {arXiv preprint arXiv:1409.3252},
  year   = {2014}
}

Comments

34 pages, 12 figures