Holographic Estimate of Electromagnetic Mass
arXiv:1409.8139 · doi:10.1007/JHEP08(2015)066
Abstract
Using the gauge/gravity duality, we calculate the electromagnetic contributions to hadron masses, where mass generates dynamically by strong QCD interactions. Based on the Sakai-Sugimoto model of holographic QCD we find that the electromagnetic mass of proton is larger than that of neutron, which is in agreement with recent lattice results. Similarly for pions we obtain , roughly half of the experimental value. The electromagnetic mass of pions is found to be independent of and 't Hooft coupling and its scale is set only by the Kaluza-Klein scale of the model, .
15 pages, 6 figures: v2. minor change, typo corrected and reference added:v3 minor change, references added: v4. published version, pion mass recalculated
References in corpus (8)
- Ab initio calculation of the neutron-proton mass difference
- Dynamics of Baryons from String Theory and Vector Dominance
- Electromagnetic mass splittings of the low lying hadrons and quark masses from 2+1 flavor lattice QCD+QED
- Baryons in AdS/QCD
- Isospin splittings in the light baryon octet from lattice QCD and QED
- Quark Mass Deformation of Holographic Massless QCD
- The Electric Dipole Moment of the Nucleons in Holographic QCD
- Holographic Monopole Catalysis of Baryon Decay