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arXiv · 2011.14668

New physics in $b\rightarrow se^+e^-$: A model independent analysis

Abstract

The lepton universality violating flavor ratios $R_K/R_{K^*}$ indicate new physics either in $b \to s \mu^+ \mu^-$ or in $b \to s e^+ e^-$ or in both. If the new physics is only $b \to s e^+ e^-$ transition, the corresponding new physics operators, in principle, can have any Lorentz structure. In this work, we perform a model independent analysis of new physics only in $b \to se^+e^-$ decay by considering effective operators either one at a time or two similar operators at a time. We include all the measurements in $b\rightarrow se^+e^-$ sector along with $R_K/R_{K^*}$ in our analysis. We show that various new physics scenarios with vector/axial-vector operators can account for $R_K/R_{K^*}$ data but those with scalar/pseudoscalar operators and with tensor operators can not. We also show that the azimuthal angular observable $P_1$ in $B \to K^* e^+ e^-$ decay is most suited to discriminate between the different allowed solutions.

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Ashutosh Kumar Alok, Suman Kumbhakar, Jyoti Saini, S Uma Sankar. 2020-11-30. New physics in $b\rightarrow se^+e^-$: A model independent analysis. https://doi.org/10.1016/j.nuclphysb.2021.115419

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