학술논문

Measurement of the branching fraction of J/ψ → ρπ at KEDR
Document Type
article
Author
The KEDR collaborationV. V. AnashinO. V. AnchugovA. V. AndrianovK. V. AstrelinaV. M. AulchenkoE. M. BaldinG. N. BaranovA. K. BarladyanA. Yu. BarnyakovM. Yu. BarnyakovI. Yu. BasokA. M. BatrakovE. A. BekhtenevO. V. BelikovD. E. BerkaevA. E. BlinovV. E. BlinovM. F. BlinovA. V. BobrovV. S. BobrovnikovA. V. BogomyagkovD. Yu. BolkhovityanovA. E. BondarA. R. BuzykaevP. B. CheblakovV. L. DorohovF. A. EmanovV. V. GambaryanD. N. GrigorievV. V. KaminskiyS. E. KarnaevG. V. KarpovS. V. KarpovK. Yu. KarukinaD. P. KashtankinP. V. KasyanenkoA. A. KatcinT. A. KharlamovaV. A. KiselevS. A. KononovA. A. KrasnovE. A. KravchenkoV. N. KudryavtsevV. F. KulikovI. A. KuyanovE. B. LevichevP. V. LogachevD. A. MaksimovYu. I. MaltsevaV. M. MalyshevA. L. MaslennikovO. I. MeshkovS. I. MishnevI. A. MorozovI. I. MorozovD. A. NikiforovS. A. NikitinI. B. NikolaevI. N. OkunevS. B. OreshkinA. A. OsipovI. V. OvtinA. V. PavlenkoS. V. PeleganchukP. A. PiminovN. A. PodgornovV. G. PrisekinO. L. RezanovaA. A. RubanG. A. SavinovA. G. ShamovL. I. ShekhtmanD. A. ShvedovB. A. ShwartzE. A. SimonovS. V. SinyatkinA. N. SkrinskyA. V. SokolovE. V. StarostinaD. P. SukhanovA. M. SukharevA. A. TalyshevV. A. TayurskyV. I. TelnovYu. A. TikhonovK. Yu. TodyshevA. G. TribendisG. M. TumaikinYu. V. UsovA. I. VorobiovV. N. ZhilichA. A. ZhukovV. V. ZhulanovA. N. Zhuravlev
Source
Journal of High Energy Physics, Vol 2023, Iss 6, Pp 1-19 (2023)
Subject
e +-e − Experiments
Particle and Resonance Production
Quarkonium
Nuclear and particle physics. Atomic energy. Radioactivity
QC770-798
Language
English
ISSN
1029-8479
Abstract
Abstract We present the study of the decay J/ψ → ρπ. The results are based on of 5.2 million J/ψ events collected by the KEDR detector at the VEPP-4M collider. The branching fractions are measured to be B $$ \mathcal{B} $$ (J/ψ → ρπ) = (2.072 ± 0.017 ± 0.062) ∙ 10 −2 and B $$ \mathcal{B} $$ (J/ψ → π + π − π 0) = (1.878 ± 0.013 ± 0.051) ∙ 10 −2, where the first uncertainties are statistical and the second systematic. Our results are more precise than the previous relative measurements.