English

Next-to-leading order Q^2-evolution of the transversity distribution h_1(x, Q^2)

High Energy Physics - Phenomenology 2016-08-25 v1

Abstract

We present a calculation of the two-loop anomalous dimension for the transversity distribution h_1(x,Q^2), γnh(1)\gamma^{h(1)}_n, in the MS scheme of the dimensional regularization. Due to the chiral-odd nature, h_1 does not mix with the gluon distributions, and thus our result is the same for the flavor-singlet and nonsinglet distributions. At small n (moment of h_1), γnh(1)\gamma^{h(1)}_n is significantly larger than γnf(1)\gamma^{f(1)}_n (the anomalous dimension for the nonsinglet f_1), but approaches γnf(1)\gamma^{f(1)}_n very quickly at large n, keeping the relation γnh(1)>γnf(1)\gamma^{h(1)}_n > \gamma^{f(1)}_n. This feature is in parallel to the relation between the one-loop anomalous dimension for f_1 and h_1.

Keywords

Cite

@article{arxiv.hep-ph/9707208,
  title  = {Next-to-leading order Q^2-evolution of the transversity distribution h_1(x, Q^2)},
  author = {A. Hayashigaki and Y. Kanazawa and Yuji Koike},
  journal= {arXiv preprint arXiv:hep-ph/9707208},
  year   = {2016}
}

Comments

28 pages, Latex. 10 figures. Submitted for publication some time ago