PRODUCTION OF HEAVY QUARKONIUM IN HIGH-ENERGY COLLIDERS

Author:

Braaten Eric1,Fleming Sean2,Yuan Tzu Chiang3

Affiliation:

1. Department of Physics, Ohio State University, Columbus, Ohio 43210

2. Department of Physics, University of Wisconsin, Madison, Wisconsin 53706

3. Davis Institute for High-Energy Physics, University of California, Davis, California 95616

Abstract

▪ Abstract  Recent data from the Tevatron collider have revealed that the production rate of prompt charmonium at large transverse momentum is orders of magnitude larger than the best theories of a few years ago had predicted. These surprising results can be understood by taking into account two recent developments that have dramatically revised the theoretical description of heavy-quarkonium production. The first is the realization that fragmentation must dominate at large transverse momentum, which implies that most charmonium in this kinematic region is produced by the hadronization of individual high-pT partons. The second is the development of a factorization formalism for quarkonium production based on nonrelativistic QCD that allows the formation of charmonium from color-octet [Formula: see text] pairs to be treated systematically. This review summarizes these theoretical developments and their implications for quarkonium production in high-energy colliders.

Publisher

Annual Reviews

Subject

Nuclear and High Energy Physics

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