English

Nucleon spin structure,topological susceptibility and the $\eta^\prime$ singlet axial vector coupling

High Energy Physics - Phenomenology 2009-10-28 v1

Abstract

The observed small value of the first moment of the polarized nucleon spin structure function g1g_1 may be interpreted, in the Veneziano--Shore approach, as a suppression of the first moment χ(0)\chi^\prime(0) of the QCD topological susceptibility. I give an extension of the Witten--Veneziano argument for the U(1)U(1) problem, which yields the O(1/N)O(1/N) correction to the N=N = \infty relation χ(0)/F02=1\chi^\prime(0)/F^2_0 = 1 (where F0F_0 is the η\eta^\prime axial vector coupling).The correction, although negative, seems too small to account for the data. I further argue that the (η,η)γγ(\eta,\eta^\prime)\rightarrow\gamma\gamma and J/ψ(η,η)γJ/\psi\rightarrow (\eta , \eta^\prime)\gamma decays indicate an enhancement rather than a suppression of F0F_0. A substantial gluon-like contribution in 0μjμ5(0)γγq2=0\langle 0\vert\partial^\mu j^{(0)}_{\mu_5} \vert\gamma\gamma \rangle \vert_{q^2=0},which could parallel a similar one in the corresponding nucleon matrix element,is suggested.

Keywords

Cite

@article{arxiv.hep-ph/9607204,
  title  = {Nucleon spin structure,topological susceptibility and the $\eta^\prime$ singlet axial vector coupling},
  author = {G. Grunberg},
  journal= {arXiv preprint arXiv:hep-ph/9607204},
  year   = {2009}
}

Comments

Latex 209,10 pages,no figures