Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9850836 | Nuclear Physics A | 2005 | 14 Pages |
Abstract
Ï+Ïâ transitions of heavy quarkonia, especially the Ï(3S)âÏ(1S)Ï+Ïâ decay process, are revisited. In the framework of the Chiral Unitary Theory (ChUT), the S wave ÏÏ final state interaction (FSI) is included. It is found that when an additional intermediate state with JP=1+ and I=1 is introduced, not only the ÏÏ invariant mass spectrum and the cosθÏâ distribution in the Ï(3S)âÏ(1S)Ï+Ïâ process can simultaneously be well explained, but also a consistent description for other bottomonia Ï+Ïâ transitions can be obtained. As a consequence, the mass and the width of the intermediate state are predicted. From the quark content analysis, this state should be a bb¯qq¯ state.
Related Topics
Physical Sciences and Engineering
Physics and Astronomy
Nuclear and High Energy Physics
Authors
F.-K. Guo, P.-N. Shen, H.-C. Chiang, R.-G. Ping,