English

Explaining B \to K pi anomaly with non-universal Z' boson

High Energy Physics - Phenomenology 2009-11-06 v1

Abstract

We study the effect of non-universal ZZ' boson in the decay modes BKπB \to K \pi. In the standard model these modes receive dominant contributions from bsb \to s QCD penguins. Therefore, in this limit one expects Sπ0K0sin2βS_{\pi^0 K^0} \approx \sin 2 \beta , Aπ0K00A_{\pi^0 K^0} \approx 0 and Aπ0KAπ+KA_{\pi^0 K^-} \approx A_{\pi^+ K^-}. The corrections due to the presence of small non-penguin contributions is found to yield Sπ0K0>sin2βS_{\pi^0 K^0} > \sin 2 \beta and ΔACP(Kπ)2.5\Delta A_{CP}(K \pi) \simeq 2.5 %. However, the measured value of Sπ0K0S_{\pi^0 K^0} is less than sin2β \sin 2 \beta and ΔACP(Kπ)15\Delta A_{CP}(K \pi) \simeq 15 %. We show the model with a non-universal ZZ' boson can successfully explain these anomalies.

Keywords

Cite

@article{arxiv.0812.1842,
  title  = {Explaining B \to K pi anomaly with non-universal Z' boson},
  author = {R. Mohanta and A. K. Giri},
  journal= {arXiv preprint arXiv:0812.1842},
  year   = {2009}
}

Comments

11 pages, 3 figures