Properties of Light Flavour Baryons in Hypercentral quark model
arXiv:1001.0849 · doi:10.1007/s12043-011-0202-4
Abstract
The light flavour baryons are studied within the quark model using the hyper central description of the three-body system. The confinement potential is assumed as hypercentral coulomb plus power potential () with power index . The masses and magnetic moments of light flavour baryons are computed for different power index, starting from 0.5 to 1.5. The predicted masses and magnetic moments are found to attain a saturated value with respect to variation in beyond the power index 1.0. Further we computed transition magnetic moments and radiative decay width of light flavour baryons. The results are in good agreement with known experimental as well as other theoretical models.
Accepted in Pramana J. of Physics
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Cited by in corpus (12)
- Mass spectra and Regge trajectories of , , and Baryons
- Excited State Mass spectra of doubly heavy baryons , and
- Excited State Mass spectra and Regge trajectories of Bottom Baryons
- Excited State Mass spectra of Singly Charmed Baryons
- Magnetic Moments of Baryons containing all heavy quarks in Quark-Diquark Model
- Spectroscopy of light baryons
- Spectroscopic Investigation of Light Strange S=-1 , and S=-2 Baryons
- Spectroscopic Study of Strangeness=-3 Baryon
- Semileptonic Transition of Baryon
- Transition properties of Doubly Heavy Baryons
- Study of Electromagnetic Properties of Light Baryons in the Hypercentral Approach
- Electromagnetic and weak decay of singly Heavy Baryons (Qqq)