The doubly charmed pseudoscalar tetraquarks T-cc(;(s)over-bar(s)over-bar)++ and T-cc(;(d)over-bar<)(s()over bar)>(++)
Künye
Agaev, S. S., Azizi, K., Barsbay, B., & Sundu H. (2019). The doubly charmed pseudoscalar tetraquarks T-cc(;(s)over-bar(s)over-bar)++ and T-cc(;(d)over-bar<)(s()over bar)>(++). Nuclear Physics B, 939, 130-144. https://doi.org/10.1016/j.nuclphysb.2018.12.021Özet
The mass and coupling of the doubly charmed J(P) = 0(-) diquark-antidiquark states T-cc (s) over bar(s) over bar(++) and T-cc;(d) over bar<(s)over (++)(bar)(>) that bear two units of the electric charge are calculated by means of QCD two-point sum rule method. Computations are carried out by taking into account vacuum condensates up to and including terms of tenth dimension. The dominant S-wave decays of these tetraquarks to a pair of conventional D-s(+) D-s0*(+)(2317) and D+ D-s0*(+)(2317) mesons are explored using QCD three-point sum rule approach, and their widths are found. The obtained results m(T) = (4390 +/- 150) MeV and Gamma = (302 +/- 113 MeV) for the mass and width of the state T-cc (s) over bar(s) over bar(++), as well as spectroscopic parameters (m) over tilde (T) (4265 +/- 140) MeV and (Gamma) over tilde = (171 +/- 52) MeV of cc; ss the tetraquark T-cc;(d) over bar<(s)over (++)(bar)(>) may be useful in experimental studies of exotic resonances.