Dalitz plot analysis of η[subscript c] → K[superscript +]K[superscript −]η and η[subscript c] → K[superscript +]K[superscript −]π[superscript 0] in two-photon interactions

We study the processes γγ → K[superscript +]K[superscript −]η and γγ → K[superscript +]K[superscript −]π[superscript 0] using a data sample of 519  fb[superscript −1] recorded with the BABAR detector operating at the SLAC PEP-II asymmetric-energy e[superscript +]e[superscript −] collider at center-o...

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Bibliographic Details
Main Authors: Cowan, Ray Franklin (Contributor), Sciolla, Gabriella (Contributor)
Other Authors: Massachusetts Institute of Technology. Laboratory for Nuclear Science (Contributor)
Format: Article
Language:English
Published: American Physical Society, 2014-10-10T17:24:55Z.
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Summary:We study the processes γγ → K[superscript +]K[superscript −]η and γγ → K[superscript +]K[superscript −]π[superscript 0] using a data sample of 519  fb[superscript −1] recorded with the BABAR detector operating at the SLAC PEP-II asymmetric-energy e[superscript +]e[superscript −] collider at center-of-mass energies at and near the Υ(nS) (n = 2,3,4) resonances. We observe η[subscript c] → K[superscript +]K[superscript −]π[superscript 0] and η[subscript c] → K[superscript +]K[superscript −]η decays, measure their relative branching fraction, and perform a Dalitz plot analysis for each decay. We observe the K[∗ over 0](1430) → Kη decay and measure its branching fraction relative to the Kπ decay mode to be R(K[∗ over 0](1430)) = [B(K[∗ over 0](1430) → Kη) over B(K[∗ over 0](1430) → Kπ)] = 0.092 ± 0.025[+0.010 over −0.025]. The η[subscript c] → K[superscript +]K[superscript −]η and K[∗ over 0](1430) → Kη results correspond to the first observations of these channels. The data also show evidence for η[subscript c](2S) → K[superscript +]K[superscript −]π[superscript 0] and first evidence for η[subscript c](2S) → K[superscript +]K[superscript −]η.
United States. Dept. of Energy
National Science Foundation (U.S.)
Alfred P. Sloan Foundation
United States-Israel Binational Science Foundation