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New tensor interaction as the source of the observed CP asymmetry in $\tau \to K_{S}\pi\nu_{\tau}$

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arxiv 1610.06293 v3 pith:WQFG5XZQ submitted 2016-10-20 hep-ph

classification hep-ph
keywords observedrightarrowasymmetrypartresultanomalybabarcoupling
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Babar collaboration has reported an intriguing opposite sign in the integrated decay rate asymmetry $A_{cp}(\tau \rightarrow K_{S}\pi\nu_{\tau})$ than that of SM prediction from the known K0 - $\bar{K0}$ mixing. Babar's result deviate from the SM prediction by about 2.7$\sigma$. If the result stands with higher precision in the future experiments, the observed sign anomaly in the $A_{cp}(\tau \rightarrow K_{S}\pi\nu_{\tau})$ can most likely come only from some new physics occurring possibly in both hadronic as well as leptonic sectors. In this work, we will give an improved analysis of our previous work where we have illustrated that, while non-standard scalar or vector/axial-vector interactions will not contribute to the observed asymmetry in the integrated decay rate, a new tensor interaction can explain the observed anomaly. Assuming the real part of the new tensorial coupling is negligible compare to its imaginary part and with $A_{cp}(\tau \rightarrow K_{S}\pi\nu_{\tau})$ and 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 1$\sigma$ of the experimental values.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Forward backward CP asymmetry in $\tau^- \to K \pi \nu_{\tau}$ in the Left-Right Inverse seesaw model

    hep-ph 2026-04 unverdicted novelty 6.0 of 10

    The Left-Right Inverse Seesaw model generates a non-decoupling scalar operator that enhances the differential forward-backward CP asymmetry A_CP^FB(s) near K* and K0* resonances in τ → Kπν_τ while leaving the integrat...

  2. Nucleon axial, tensor, and scalar charges and $\sigma$-terms in lattice QCD

    hep-lat 2025-02 conditional novelty 4.0 of 10

    Continuum-limit nucleon charges and sigma-terms from physical-point lattice ensembles: the isovector axial charge is 1.250(24) and sigma_piN is 41.9(8.1) MeV, with a preliminary finer-lattice check.

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