arXiv:hep-ph/0404276·v2·High Energy Physics — Phenomenology
Counting and Tensorial Properties of Twist-Two Helicity-Flip Nucleon Form Factors
Zhang Chen (1)🇺🇸 · Xiangdong Ji (2) ((1) Manhattanville College, (2) Univ. of Maryland, College Park)🇺🇸
Abstract
We perform a systematic analysis on the off-forward matrix elements of the twist-two quark and gluon helicity-flip operators. By matching the allowed quantum numbers and their crossing channel counterparts (a method developed by Ji & Lebed), we systematically count the number of independent nucleon form factors in off-forward scattering of matrix elements of these quark and gluon spin-flip operators. In particular, we find that the numbers of independent nucleon form factors twist-2, helicity flip quark (gluon) operators are () if is odd, and () if is even, with (). We also analysis and write down the tensorial/Lorentz structure and kinematic factors of the expansion of these operators' matrix elements in terms of the independent form factors. These generalized form factors define the off-forward quark and gluon helicity-flip distributions in the literature.
Comments: 18 pages, revtex4