Fragmentation functions of and considering the role of heavy quarkonium spin
arXiv:1506.08861 · doi:10.1140/epjp/i2015-15136-y
Abstract
The production of heavy quarkonia is a powerful tool to test our understanding of strong interaction dynamics. It is well-known that the dominant production mechanism for heavy quarkonia with large transverse momentum is fragmentation. In this work we, analytically, calculate the QCD leading order contribution to the process-independent fragmentation functions (FFs) for a gluon to split into the vector () and pseudoscalar () -wave charmonium states. The analyses of this paper differ in which we present, for the first time, an analytical form of the FF using a different approach (Suzuki's model) in comparison with other results presented in literatures, where the Braaten's scheme was used and the two-dimensional integrals were presented for the gluon FFs which must be evaluated numerically. The universal fragmentation probability for the is about which is in good consistency with the result obtained in the Braaten's model.
References in corpus (3)
Cited by in corpus (9)
- Proton fragmentation functions considering finite-mass corrections
- Heavy quark fragmentation functions at next-to-leading perturbative QCD
- fragmentation functions from pQCD approach and the Suzuki model
- Global analysis of fragmentation functions and their application to polarized top quark decays considering new {\it BABAR} and {\it Belle} experimental data
- An analysis of the fragmentation function of gluon at next-to-leading order approximation
- QCD analysis of non-singlet structure functions at NNLO accuracy, based on the Laplace transform
- Comments on "Study of production in jets"
- A new parton fragmentation procedure for heavy hadron production in proton-proton collisions
- Relativistic effect of hadroproduction in large region