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Single Transverse Spin Asymmetries at Parton Level
Authors:CAO Hui-Geng  MA Jian-Ping  SANG Hua-Zheng
Affiliation:1.Science School, Beijing University of Civil Engineering and Architecture, Beijing 100044, China;2.Institute of Theoretical Physics, Academia Sinica, P.O. Box 2735, Beijing 100190, China;3.Institute of Modern Physics, School of Science, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China
Abstract:Two factorization approaches have been proposed for single transverse spin asymmetries. One is the collinear factorization, the other is the transverse-momentum-dependent factorization. They have been previously derived in a formal way by using diagram expansion at hadron level. If the two factorizations hold or can be proven, they should also hold when we replace hadrons with parton states. We examine these two factorizations at parton level with massless partons. It is nontrivial to generate these asymmetries at parton level with massless partons because the asymmetries requirehelicity-flip and nonzero absorptive parts in scattering amplitudes. By constructing suitable parton states with massless partons we derive the two factorizations for the asymmetry in Drell-Yan processes. It is found from our results that the collinear factorization derived at parton level is not the same as that derived at hadron level. Our results with massless partons confirm those derived with single massive parton state in our previous works.
Keywords:single spin asymmetries   QCD factorization
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