Measurements of the S-wave fraction in $B^{0}\rightarrow K^{+}\pi^{-}\mu^{+}\mu^{-}$ decays and the $B^{0}\rightarrow K^{\ast}(892)^{0}\mu^{+}\mu^{-}$ differential branching fraction
LHCb collaboration: R. Aaij, B. Adeva, M. Adinolfi, Z. Ajaltouni, S., Akar, J. Albrecht, F. Alessio, M. Alexander, S. Ali, G. Alkhazov, P. Alvarez, Cartelle, A.A. Alves Jr, S. Amato, S. Amerio, Y. Amhis, L. An, L. Anderlini,, G. Andreassi, M. Andreotti, J.E. Andrews

TL;DR
This paper reports precise measurements of the S-wave fraction and differential branching fraction for the decay B0 to K*0 mu+ mu-, using LHCb data, confirming Standard Model predictions within uncertainties.
Contribution
It provides the most precise measurements to date of the S-wave fraction and differential branching fraction for B0 to K*0 mu+ mu- decays in the specified q^2 region.
Findings
S-wave fraction F_S = 0.101 ± 0.017 (stat) ± 0.009 (syst)
Differential branching fraction dB/dq^2 = (0.342 ± 0.017 (stat) ± 0.009 (syst) ± 0.023 (norm))×10^{-7} c^4/GeV^2
Results agree with Standard Model predictions.
Abstract
A measurement of the differential branching fraction of the decay is presented together with a determination of the S-wave fraction of the system in the decay . The analysis is based on -collision data corresponding to an integrated luminosity of 3\,fb collected with the LHCb experiment. The measurements are made in bins of the invariant mass squared of the dimuon system, . Precise theoretical predictions for the differential branching fraction of decays are available for the region . In this region, for the invariant mass range , the S-wave fraction of the system in …
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