c(2910) and c(2940) productions in π- p scattering process

Abstract

In the present work, we propose to investigate the productions of c(2910) and c(2940) in the π- p → D- D0 p processes by utilizing an effective Lagrangian approach, where c(2910) and c(2940) are considered as D N molecular states with JP quantum numbers to be 1/2- and 3/2-, respectively. With the cutoff parameter determined by the upper limit of the cross sections for π- p D- c(2286), the ratios of the cross sections for π- p D- c(2286), π- p D- c(2286), π- p D- c(2910), and π- p D- c(2940) are estimated to be 1:4.8:1.42:0.26 at pπ=30 GeV. Considering that the c(2910) and c(2940) state can further decay into D0p, we estimate the cross sections for π- p → D- D0 p process and the differential cross sections depending on the D0 p invariant mass spectrum. Our estimations indicate that the total cross sections are (0.49+1.56-0.38) nb when pπ=15~GeV, where the uncertainties result from the variation of the r. By comparing the contributions of the s, u, and t-channels, we conclude that the t-channel plays the predominant role. Moreover, the present estimations suggest that the structure around 2.9 GeV in the D0 p invariant mass spectrum of the π- p → D- D0 p process should correspond to c(2910) rather than c(2940), which can be tested by further experimental measurements at J-PARC in the future.

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