arXiv:0912.5498·v2·High Energy Physics — Phenomenology
Color-singlet relativistic correction to inclusive production associated with light hadrons at factories
Yu Jia🇨🇳
Abstract
We study the first-order relativistic correction to the associated production of with light hadrons at factory experiments at GeV, in the context of NRQCD factorization. We employ a strategy for NRQCD expansion that slightly deviates from the orthodox doctrine, in that the matching coefficients are not truly of ``short-distance" nature, but explicitly depend upon physical kinematic variables rather than partonic ones. Our matching method, with validity guaranteed by the Gremm-Kapustin relation, is particularly suited for the inclusive quarkonium production and decay processes with involved kinematics, exemplified by the process considered in this work. Despite some intrinsic ambiguity affiliated with the order- NRQCD matrix element, if we choose its value as what has been extracted from a recent Cornell-potential-model-based analysis, including the relative order- effect is found to increase the lowest-order prediction for the integrated cross section by about 30\%, and exert a modest impact on energy, angular and polarization distributions except near the very upper end of the energy. The order- contribution to the energy spectrum becomes logarithmically divergent at the maximum of energy. A consistent analysis may require that these large end-point logarithms be resummed to all orders in .
Comments: v2; 41 pages, 5 figures; references added, Section VI and Appendix B expanded