arXiv:1212.2328·v2·High Energy Physics — Phenomenology
Unexpected equality of the quark and gluon Belinfante angular momentum and Canonical angular momentum in the light-cone gauge , in a spin 1/2 nucleon
Abstract
A controversy is raging concerning the most physically meaningful definition of quark and gluon angular momentum, a question of importance in understanding the internal structure of the nucleon. There are, in my, opinion, two principal candidates: the Belinfante version, , which is gauge invariant, and the Canonical version, , which is non-gauge invariant, but which has a physically intuitive structure. I demonstrate the wholly unexpected result that for quarks in a spin 1/2 nucleon the expectation value of is equal to the expectation value of taken in the light-cone gauge , with an analogous result for gluons.
Comments: 7 pages This paper has been withdrawn by the author since the result is incorrect, being based on the use of an insufficiently general structure for the relevant tensors