Models for the Polarized Parton Distributions of the Nucleon
M. Gluck, E. Reya, M. Stratmann, W. Vogelsang
Abstract
Polarized deep inelastic scattering (DIS) data are analyzed in leading and next-to-leading order of QCD within the common `standard' scenario of polarized parton distributions with a flavor-symmetric light sea (antiquark) distribution δq, and a completely SU(3)f broken `valence' scenario with totally flavor-asymmetric light sea densities (δu≠δd≠δs). The latter flavor-broken light sea distributions are modelled with the help of a Pauli-blocking ansatz at the low radiative/dynamical input scales of μ LO(NLO)2=0.26 (0.40) GeV2 which complies with predictions of the chiral quark-soliton model and expectations based on the statistical parton model as well as with the corresponding, well established, flavor-broken unpolarized sea (d>u). Present semi-inclusive DIS data cannot yet uniquely discriminate between those two flavor-symmetric and flavor-broken polarized light sea scenarios.
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