Prediction of hidden charm strange molecular baryon states with heavy quark spin symmetry

We have studied the meson-baryon S−wave interaction in the isoscalar hidden-charm strange sector with the coupled-channels, ηΛ, J/ψΛ, D¯Ξ, D¯Λ, D¯Ξ , D¯Ξ, D¯ Λ, D¯Ξ , D¯Ξ in J=1/2, J/ψΛ, D¯Ξ, D¯ Λ, D¯Ξ , D¯Ξ , D¯Ξ in 3/2 and D¯Ξ in 5/2. We impose constraints of heavy quark spin symmetry in the inter...

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Detalles Bibliográficos
Autores: Xiao, C. W., Nieves, Juan Miguel, Oset, Eulogi
Tipo de recurso: artículo
Estado:Versión publicada
Fecha de publicación:2019
País:España
Institución:Consejo Superior de Investigaciones Científicas (CSIC)
Repositorio:DIGITAL.CSIC. Repositorio Institucional del CSIC
OAI Identifier:oai:digital.csic.es:10261/206862
Acceso en línea:http://hdl.handle.net/10261/206862
Access Level:acceso abierto
Descripción
Sumario:We have studied the meson-baryon S−wave interaction in the isoscalar hidden-charm strange sector with the coupled-channels, ηΛ, J/ψΛ, D¯Ξ, D¯Λ, D¯Ξ , D¯Ξ, D¯ Λ, D¯Ξ , D¯Ξ in J=1/2, J/ψΛ, D¯Ξ, D¯ Λ, D¯Ξ , D¯Ξ , D¯Ξ in 3/2 and D¯Ξ in 5/2. We impose constraints of heavy quark spin symmetry in the interaction and obtain the non vanishing matrix elements from an extension of the local hidden gauge approach to the charm sector. The ultraviolet divergences are renormalized using the same meson-baryon-loops regulator previously employed in the non-strange hidden charm sector, where a good reproduction of the properties of the newly discovered pentaquark states is obtained. We obtain five states of 1/2, four of 3/2 and one of 5/2, which could be compared in the near future with forthcoming LHCb experiments. The 5/2, three of the 3/2 and another three of the 1/2 resonances are originated from isoscalar D¯Ξ and D¯Ξ interactions. They should be located just few MeV below the corresponding thresholds (4446, 4513, 4588 and 4655 MeV), and would be SU(3)-siblings of the isospin 1/2 D¯Σ quasi-bound states previously found, and that provided a robust theoretical description of the P(4440), P(4457) and P(4312) LHCb exotic states. The another two 1/2 and 3/2 states obtained in this work are result of the D¯Ξ−D Λ coupled-channels isoscalar interaction, are significantly broader than the others, with widths of the order of 15 MeV, being D¯ Λ the dominant decay channel.