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Evidence for an $η_c(1S) π^-$ resonance in $B^0 \to η_c(1S) K^+π^-$ decays

Published 19 Sep 2018 in hep-ex | (1809.07416v2)

Abstract: A Dalitz plot analysis of $B0 \to \eta_c(1S) K+\pi-$ decays is performed using data samples of $pp$ collisions collected with the LHCb detector at centre-of-mass energies of $\sqrt{s}=7,~8$ and $13$ TeV, corresponding to a total integrated luminosity of $4.7~\text{fb}{-1}$. A satisfactory description of the data is obtained when including a contribution representing an exotic $\eta_c(1S) \pi-$ resonant state. The significance of this exotic resonance is more than three standard deviations, while its mass and width are $4096 \pm 20~{+18}_{-22}$ MeV and $152 \pm 58~{+60}_{-35}$ MeV, respectively. The spin-parity assignments $JP=0+$ and $J{P}=1-$ are both consistent with the data. In addition, the first measurement of the $B0 \to \eta_c(1S) K+\pi-$ branching fraction is performed and gives $\displaystyle \mathcal{B}(B0 \to \eta_c(1S) K+\pi-) = (5.73 \pm 0.24 \pm 0.13 \pm 0.66) \times 10{-4}$, where the first uncertainty is statistical, the second systematic, and the third is due to limited knowledge of external branching fractions.

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