Quark Spin Properties at High x
arXiv:hep-ph/0310347 · doi:10.1016/j.physletb.2004.03.017
Abstract
A general three quark bound state satisfying the Pauli principle, and conserving angular momentum and isospin, is used to investigate the spin structure of nucleons at high . It is shown if {1/4}, then both and , as well as quark spin distribution , will approach 1 as 1 in polarized deep inelastic scattering. The spin distribution does not approach 1, but is bound by the limits for any .
The quark function ϕ(123) satisfies the constraint ϕ(123)+ϕ(213)=ϕ(132)+ϕ(231), which is less restrictive than the symmetry condition ϕ(123)=ϕ(132) originally stated. This means the constraint d\downarrow=u\uparrow does not hold at all x. (It still applies for x--> 1.) The main conclusions that Δu/u--> 1 as x--> 1, but -1/3<(Delta d/d)<0 still hold