Measurement of CP violating asymmetries in B^0 -> K^+K^- K^0_S decays with a time-dependent Dalitz approach
Belle Collaboration: Y. Nakahama, K. Sumisawa, H. Aihara, K., Arinstein, T. Aushev, T. Aziz, A. M. Bakich, V. Balagura, K. Belous, V., Bhardwaj, M. Bischofberger, A. Bondar, G. Bonvicini, A. Bozek, M. Bracko, T., E. Browder, P. Chang, Y. Chao, A. Chen, P. Chen, B. G. Cheon

TL;DR
This paper measures CP violation in B^0 decays to K+K- K0_S using a time-dependent Dalitz analysis, finding results consistent with previous measurements and no significant direct CP violation.
Contribution
It introduces a time-dependent Dalitz approach to analyze CP violation in B^0 decays, providing new measurements of CP violation parameters with multiple solutions.
Findings
Four solutions describe the data with similar CP phase values.
Measured CP violation parameters are consistent with previous B decay measurements.
No significant direct CP violation was observed.
Abstract
We report a measurement of violating asymmetries in decays with a time-dependent Dalitz approach. This analysis is based on a data sample of pairs accumulated at the resonance with the Belle detector at the KEKB asymmetric-energy collider. As the result of an unbinned maximum likelihood fit to the selected candidates, the mixing-induced and direct violation parameters, and are obtained for , and other decays. We find four solutions that describe the data. There are \{eqnarray*} \phi_1^{\rm eff}(B^0\to \phi(1020) K^0_S) & = & (32.2 \pm 9.0 \pm 2.6 \pm 1.4)^{\circ}; \phi_1^{\rm eff}(B^0\to \phi(1020) K^0_S) & = & (26.2 \pm 8.8 \pm 2.7 \pm 1.2)^{\circ};\\ \phi_1^{\rm…
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