4.8 Article

χc1 and χc2 Resonance Parameters with the Decays χc1,c2 → J/ψμ+μ-

期刊

PHYSICAL REVIEW LETTERS
卷 119, 期 22, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.119.221801

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资金

  1. CERN
  2. CAPES (Brazil)
  3. CNPq (Brazil)
  4. FAPERJ (Brazil)
  5. FINEP (Brazil)
  6. MOST (China)
  7. NSFC (China)
  8. CNRS/IN2P3 (France)
  9. BMBF (Germany)
  10. DFG (Germany)
  11. MPG (Germany)
  12. INFN (Italy)
  13. NWO (Netherlands)
  14. MNiSW (Poland)
  15. NCN (Poland)
  16. MEN/IFA (Romania)
  17. MinES (Russia)
  18. FASO (Russia)
  19. MinECo (Spain)
  20. SNSF (Switzerland)
  21. SER (Switzerland)
  22. NASU (Ukraine)
  23. STFC (United Kingdom)
  24. NSF (USA)
  25. AvH Foundation (Germany)
  26. EPLANET (European Union)
  27. Marie Sklodowska-Curie Actions (European Union)
  28. ERC (European Union)
  29. ANR
  30. Labex P2IO
  31. ENIGMASS
  32. OCEVU
  33. Region Auvergne-Rhone-Alpes (France)
  34. RFBR (Russia)
  35. Yandex LLC (Russia)
  36. GVA (Spain)
  37. XuntaGal (Spain)
  38. GENCAT (Spain)
  39. Herchel Smith Fund (United Kingdom)
  40. Royal Society (United Kingdom)
  41. English-Speaking Union (United Kingdom)
  42. Leverhulme Trust (United Kingdom)
  43. STFC [1707993, ST/H006737/1, 1796908, ST/N000331/1, 1641747, LHCb Upgrades, LHCb, ST/J004332/1, ST/M003140/1, ST/L001152/1, ST/K003410/1, ST/G005974/1] Funding Source: UKRI

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The decays chi(c1) -> J/psi mu(+)mu(-) and chi(c1) -> J/psi mu(+)mu(-) are observed and used to study the resonance parameters of the chi(c1) and chi(c2) mesons. The masses of these states are measured to be m(chi(c1)) = 3510.71 +/- 0.04(stat) +/- 0.09(syst) MeV and m(chi(c2)) = 3556.10 +/- 0.06(stat) +/- 0.11(syst) MeV, where the knowledge of the momentum scale for charged particles dominates the systematic uncertainty. The momentum-scale uncertainties largely cancel in the mass difference m(chi(c2)) - m(chi(c1)) = 45.39 +/- 0.07(stat) +/- 0.03(syst) MeV. The natural width of the chi(c2) meson is measured to be Gamma(chi(c2)) = 2.10 +/- 0.20(stat) +/- 0.02(syst) MeV. These results are in good agreement with and have comparable precision to the current world averages.

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