We present an updated study of transverse single-spin asymmetries for the inclusive large-P-T processes lp(up arrow) -> hX and lp(up arrow) -> jetX, within a transverse momentum-dependent approach, including the contribution of quasireal (Weizsacker-Williams) photons. In the spirit of a unified transverse momentum-dependent scheme, predictions are obtained adopting the Sivers and transversity distributions and the Collins fragmentation functions as extracted from fits to the azimuthal asymmetries measured in semi-inclusive deep inelastic scattering and e(+)e-annihilation processes. The description of the available data is extremely good, showing a clear general improvement with respect to the previous leading-order analysis. Predictions for unpolarized cross sections and single-spin asymmetries for ongoing and future experiments are also given.

Transverse single-spin asymmetries in within a TMD approach: Role of quasireal photon exchange

Carlo Flore
Co-first
;
2017-01-01

Abstract

We present an updated study of transverse single-spin asymmetries for the inclusive large-P-T processes lp(up arrow) -> hX and lp(up arrow) -> jetX, within a transverse momentum-dependent approach, including the contribution of quasireal (Weizsacker-Williams) photons. In the spirit of a unified transverse momentum-dependent scheme, predictions are obtained adopting the Sivers and transversity distributions and the Collins fragmentation functions as extracted from fits to the azimuthal asymmetries measured in semi-inclusive deep inelastic scattering and e(+)e-annihilation processes. The description of the available data is extremely good, showing a clear general improvement with respect to the previous leading-order analysis. Predictions for unpolarized cross sections and single-spin asymmetries for ongoing and future experiments are also given.
2017
95
9
094002
094020
Umberto D’Alesio; Carlo Flore; Francesco Murgia
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1901307
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