English

Full angular spectrum analysis of tensor current contribution to $A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau})$

High Energy Physics - Phenomenology 2018-11-29 v9

Abstract

Babar collaboration has reported an intriguing opposite sign in the integrated decay rate asymmetry Acp(τKsπντ)A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau}) than that of SM prediction from the known K0K^{0} - K0ˉ\bar{K^{0}} mixing. Babar's result deviate from the SM prediction by about 2.7σ\sigma. If the result stands with higher precision in the future experiments, the observed sign anomaly in the Acp(τKsπντ)A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau}) can most likely come only from a NP. In this work we present a full angular spectrum analysis on the contribution to Acp(τKsπντ)A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau}) coming from the tensorial term. Assuming the real part of the NP tensorial coupling is negligible compare to its imaginary part and with Acp(τKsπντ)A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau}) and Br(τKsπντ)Br(\tau \rightarrow K_{s} \pi \nu_{\tau}) as data points to fit the imaginary part of the NP coupling, we have been able to fit the result within 1σ\sigma of the experimental values.

Keywords

Cite

@article{arxiv.1605.00629,
  title  = {Full angular spectrum analysis of tensor current contribution to $A_{cp}(\tau \rightarrow K_{s} \pi \nu_{\tau})$},
  author = {Lobsang Dhargyal},
  journal= {arXiv preprint arXiv:1605.00629},
  year   = {2018}
}

Comments

Matches with the published version in LHEP. DOI: 10.31526/LHEP.3.2018.03