Quark Orbital Angular Momentum from Lattice QCD
arXiv:hep-ph/9912289 · doi:10.1103/PhysRevD.62.114504
Abstract
We calculate the quark orbital angular momentum of the nucleon from the quark energy-momentum tensor form factors on the lattice. The disconnected insertion is estimated stochastically which employs the noise with an unbiased subtraction. This reduced the error by a factor of 4 with negligible overhead. The total quark contribution to the proton spin is found to be . From this and the quark spin content we deduce the quark orbital angular momentum to be which is % of the proton spin. We further predict that the gluon angular momentum to be , i. e. 40% of the proton spin is due to the glue.
4 pages, 7 figures