Quark orbital angular momentum as a chiral magnetic effect
arXiv:2605.23125
Abstract
The flavor-nonsinglet () quark angular momentum (AM) in the proton is computed based on the effective spin-flavor dynamics emerging from chiral symmetry breaking by QCD instantons. The QCD AM operators are converted to effective spin-flavor operators expressing instanton-induced chiral interactions. A large negative orbital AM arises as a ``chiral magnetic effect'' of the interaction of the quarks with the chiral mean field in the proton in the large- limit. It cancels part of the large positive spin AM and reduces the total AM , in agreement with lattice QCD calculations.
8 pages, 1 figure