Baryon masses estimate in heavy flavor QCD
arXiv:2305.06728 · doi:10.1007/s00601-023-01818-9
Abstract
We apply the renormalization group procedure for effective particles (RGPEP) to the QCD eigenvalue problem for only heavy quarks. We derive the effective Hamiltonian that acts on the Fock space by solving the RGPEP equation up to second order in powers of the coupling constant. The eigenstates that contain three quarks and two or more gluons are eliminated by inserting a gluon-mass term in the component with one gluon and formulate the eigenvalue problem for baryons. We estimate masses for and states and find that the results match the estimates obtained in lattice QCD and in quark models.
Presented by Mar{í}a Gómez-Rocha at the International Conference on the Structure of Baryons, November 7-11th, Universidad Pablo de Olavide, Sevilla, Spain. 11 pages, 2 figures, 2 tables
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- Unwinding the rare sector: Fragmentation of fully charmed baryons from HL-LHC to FCC
- Triply heavy baryon spectroscopy revisited
- Triply Heavy Baryons with JETHAD: A High-Energy Viewpoint
- Triply-heavy/strange baryons with Cornell potential on a quantum computer
- Mass spectrum, magnetic moments and Regge trajectories of and baryons in the nonrelativistic quark--diquark model