We study the transverse-momentum distribution of hadrons produced in semi-inclusive deep-inelastic scattering (SIDIS). We consider cross sections for various combinations of polarizations of the initial lepton and nucleon or the produced hadron, for which we perform the resummation of large double-logarithmic perturbative corrections arising at small transverse momentum. We present phenomenological results for the processes $lp\to l\pi X$ with longitudinally polarized leptons and protons. We discuss the impact of the perturbative resummation and of estimated non-perturbative contributions on the corresponding cross sections and their spin asymmetry. Our results should be relevant for ongoing studies in the COMPASS experiment at CERN, and fo...
We present a recent study of the QCD corrections to dilepton production near partonic threshold in t...
The study of transverse single-spin asymmetries (SSAs) is closely related to our understanding of st...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...
We study the transverse-momentum distribution of hadrons produced in semi-inclusive deep-inelastic s...
We study the transverse-momentum distribution of hadrons produced in semi-inclusive deep-inelastic s...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
After 50 years of investigations, the nucleon is still far from being understood and continues to re...
Semi-inclusive deep-inelastic lepton-nucleon scattering provides a powerful tool for unraveling the ...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
Transverse momentum dependent distribution functions offer deep insights into the quark and gluon st...
The investigation of transverse spin and transverse momentum dependent effects in deep inelastic sca...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
The transverse momentum structure of the nucleon generalizes the 1-dimensional parton distribution f...
We present a recent study of the QCD corrections to dilepton production near partonic threshold in t...
The study of transverse single-spin asymmetries (SSAs) is closely related to our understanding of st...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...
We study the transverse-momentum distribution of hadrons produced in semi-inclusive deep-inelastic s...
We study the transverse-momentum distribution of hadrons produced in semi-inclusive deep-inelastic s...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
After 50 years of investigations, the nucleon is still far from being understood and continues to re...
Semi-inclusive deep-inelastic lepton-nucleon scattering provides a powerful tool for unraveling the ...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
Transverse momentum dependent distribution functions offer deep insights into the quark and gluon st...
The investigation of transverse spin and transverse momentum dependent effects in deep inelastic sca...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
We investigate the transverse-momentum-dependence in semi-inclusive deep inelastic leptoproduction o...
The transverse momentum structure of the nucleon generalizes the 1-dimensional parton distribution f...
We present a recent study of the QCD corrections to dilepton production near partonic threshold in t...
The study of transverse single-spin asymmetries (SSAs) is closely related to our understanding of st...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...