English

Wavefunction-Independent Relations between the Nucleon Axial-Coupling g_A and the Nucleon Magnetic Moments

High Energy Physics - Phenomenology 2009-09-25 v1

Abstract

We calculate the proton's magnetic moment μp\mu_p and its axial-vector coupling gAg_A as a function of its Dirac radius R1R_1 using a relativisitic three-quark model formulated on the light-cone. The relationship between μp\mu_p and gAg_A is found to be independent of the assumed form of the light-cone wavefunction. At the physical radius R1=0.76R_1=0.76 fm, one obtains the experimental values for both μp\mu_p and gAg_A, and the helicity carried by the valence uu and dd quarks are each reduced by a factor 0.75\simeq 0.75 relative to their non-relativistic values. At large proton radius, μp\mu_p and gAg_A are given by the usual non-relativistic formulae. At small radius, μp\mu_p becomes equal to the Dirac moment, as demanded by the Drell-Hearn-Gerasimov sum rule. In addition, as R10,R_1 \to 0, the constituent quark helicities become completely disoriented and gA0g_A \to 0.

Keywords

Cite

@article{arxiv.hep-ph/9402214,
  title  = {Wavefunction-Independent Relations between the Nucleon Axial-Coupling g_A and the Nucleon Magnetic Moments},
  author = {Stanley J. Brodsky and Felix Schlumpf},
  journal= {arXiv preprint arXiv:hep-ph/9402214},
  year   = {2009}
}

Comments

17 pages, RevTeX, 4 uuencoded figures, SLAC-PUB-6431