English

Spin-Dependent Structure Functions of Real and Virtual Photons

High Energy Physics - Phenomenology 2009-01-07 v1

Abstract

The implications of the positivity constraint, g1γ(P2)(x,Q2)F1γ(P2)(x,Q2)|g_1^{\gamma(P^2)}(x,Q^2)| \leq F_1^{\gamma(P^2)}(x,Q^2), on the presently unknown spin--dependent structure function g1γ(P2)(x,Q2)g_1^{\gamma(P^2)}(x,Q^2) of real and virtual photons are studied at scales Q2P2Q^2\gg P^2 where longitudinally polarized photons dominate physically relevant cross sections. In particular it is shown how to implement the physical constraints of positivity and continuity at P2=0P^2=0 in NLO calculations which afford a nontrivial choice of suitable (DIS) factorization schemes related to g1γg_1^{\gamma} and F1γF_1^{\gamma} and appropriate boundary conditions for the polarized parton distributions of real and virtual photons. The predictions of two extreme `maximal' and `minimal' saturation scenarios are presented and compared with results obtained within the framework of a simple quark `box' calculation expected to yield reasonable estimates in the not too small regions of xx and P2P^2.

Cite

@article{arxiv.hep-ph/0103137,
  title  = {Spin-Dependent Structure Functions of Real and Virtual Photons},
  author = {M. Gluck and E. Reya and C. Sieg},
  journal= {arXiv preprint arXiv:hep-ph/0103137},
  year   = {2009}
}

Comments

33 pages, LaTeX, 12 figures