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201320162019202220233201
Abstract: (arXiv)
The decay rates and spectroscopy of the DD and DsD_s mesons are computed in a nonrelativistic phenomenological quark-antiquark potential of the type V(r)=4/3αsr+ArνV(r)=-{4/3}\frac{\alpha_s}{r}+A r^{\nu} with different choices of ν\nu. Numerical method to solve the Schr\'odinger equation has been used to obtain the spectroscopy of qQˉq\bar{Q} mesons. The spin hyperfine, spin-orbit and tensor components of the one gluon exchange interactions are employed to compute the spectroscopy of the excited SS states, low lying PP-waves and DD-waves. The numerically obtained radial solutions are employed to obtain the decay constant and leptonic decay widths. It has been observed that predictions of the spectroscopy and the decay widths are consistent with other model predictions as well as with the known experimental values.
  • charmed meson: hadron spectroscopy
  • D
  • D/s
  • charmed meson: excited state
  • quark antiquark: potential
  • nonrelativistic
  • Schroedinger equation: solution
  • spin
  • hyperfine structure
  • spin: orbit