Annihilation diagram contribution to charmonium masses
arXiv:2110.01755 · doi:10.1088/1674-1137/ac3d8c
Abstract
In this work, we generate gauge configurations with dynamical charm quarks on anisotropic lattices. The mass shift of and charmonia owing to the charm quark annihilation effect can be investigated directly in a manner of unitary theory. The distillation method is adopted to treat the charm quark annihilation diagrams at a very precise level. For charmonia, the charm quark annihilation effect almost does not change the mass, but lifts the mass by approximately 3-4 MeV. For charmonia, this effect results in positive mass shifts of approximately 1 MeV for and , but decreases the mass by approximately 3 MeV. We have not obtain a reliable result for the mass shift of . In addition, it is observed that the spin averaged mass of the spin-triplet charmonia is in a good agreement with the , as expected by the non-relativistic quark model and measured by experiments.
References in corpus (4)
- A novel quark-field creation operator construction for hadronic physics in lattice QCD
- First results from 2+1 dynamical quark flavors on an anisotropic lattice: light-hadron spectroscopy and setting the strange-quark mass
- Towards the glueball spectrum from unquenched lattice QCD
- Tuning for Three-flavors of Anisotropic Clover Fermions with Stout-link Smearing