4.7 Article

Study of B± → K±(KSKπ)0 decay and determination of ηc and ηc(2S) parameters

期刊

PHYSICS LETTERS B
卷 706, 期 2-3, 页码 139-149

出版社

ELSEVIER
DOI: 10.1016/j.physletb.2011.11.014

关键词

B decay; Etac

资金

  1. Ministry of Education, Culture, Sports, Science, and Technology (MEXT) of Japan
  2. Japan Society for the Promotion of Science (JSPS)
  3. Tau-Lepton Physics Research Center of Nagoya University
  4. Australian Research Council
  5. Australian Department of Industry, Innovation, Science and Research
  6. National Natural Science Foundation of China [10575109, 10775142, 10875115, 10825524]
  7. Ministry of Education, Youth and Sports of the Czech Republic [LA10033, M5M0021620859]
  8. Department of Science and Technology of India
  9. BK21
  10. Ministry Education Science and Technology, National Research Foundation of Korea
  11. NSDC of the Korea Institute of Science and Technology Information
  12. Polish Ministry of Science and Higher Education
  13. Ministry of Education and Science of the Russian Federation
  14. Russian Federal Agency for Atomic Energy
  15. Slovenian Research Agency
  16. Swiss National Science Foundation
  17. National Science Council
  18. Ministry of Education of Taiwan
  19. US Department of Energy
  20. JSPS

向作者/读者索取更多资源

We report the results of a study of B KIrk and /II K tic(2S) decays followed by qc and '/c(2S) decays to (K5K7). The results are obtained from a data sample containing 535 million BB-meson pairs collected by the Belle experiment at the KEKB e+e- collider. We measure the products of the branching fractions B(B > IC7ic)13(71, Ks K 7T) = (26.7 1.4(stat)+N(syst) 4.9(model)) x 10-6 and 8(B -+ K 71c(25))8(rIc(2S) Ksi(7tT) = (3.4+N(stat + model)t(syst)) x 10-6. Interference with the non-resonant component leads to significant model uncertainty in the measurement of these product branching fractions. Our analysis accounts for this interference and allows the model uncertainty to be reduced. We also obtain the following charmonia masses and widths: MO/c) = (2985.4 1.5(stat)1:8(syst)) MeV /c2, r(t1c)= (35.1 3.1(sta0+1:2(syst)) MeV/c2, M(ric (2S)) = (3636.111(stat + model)+3:70 (syst)) MeV/c2, r (17c (2S)) = (6.61:1(stat + model)11(syst)) MeV/c2. C) 2011 Elsevier B.V. All rights reserved.

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