English

Nuclear dependence of Q^2 evolution in the structure function F_2

High Energy Physics - Phenomenology 2014-11-17 v1 Nuclear Theory

Abstract

Q2Q^2 evolution of the structure functions F2F_2 in tin and carbon nuclei is investigated in order to understand recent NMC measurements. F2F_2 is evolved by using leading-order DGLAP, next-to-leading-order DGLAP, and parton-recombination equations. NMC experimental result [F2Sn/F2C]/[lnQ2]0\partial [F_2^{Sn}/F_2^C]/ \partial [\ln Q^2]\ne 0 could be essentially understood by the difference of parton distributions in the tin and carbon nuclei. However, we find an interesting indication that large higher-twist effects on the Q2Q^2 evolution could be ruled out. Nuclear dependence of the Q2Q^2 evolution could be interesting for further detailed studies. 1. Introduction 2. Q^2 evolution of F_2 in tin and carbon nuclei 3. Conclusions

Keywords

Cite

@article{arxiv.hep-ph/9512244,
  title  = {Nuclear dependence of Q^2 evolution in the structure function F_2},
  author = {S. Kumano and M. Miyama},
  journal= {arXiv preprint arXiv:hep-ph/9512244},
  year   = {2014}
}

Comments

10 pages, Latex, 2 eps figures. Complete postscript file including the figures is available at ftp://ftp.cc.saga-u.ac.jp/pub/paper/riko/quantum1/saga-he-83.ps.gz or at http://www.cc.saga-u.ac.jp/saga-u/riko/physics/quantum1/structure.html

R2 v1 2026-07-22T14:28:50.421Z