AbstractSingle-spin asymmetries for pions and charged kaons are measured in semi-inclusive deep-inelastic scattering of positrons and electrons off a transversely nuclear-polarized hydrogen target. The dependence of the cross section on the azimuthal angles of the target polarization (ϕS) and the produced hadron (ϕ) is found to have a substantial sin(ϕ+ϕS) modulation for the production of π+, π− and K+. This Fourier component can be interpreted in terms of non-zero transversity distribution functions and non-zero favored and disfavored Collins fragmentation functions with opposite sign. For π0 and K− production the amplitude of this Fourier component is consistent with zero
AbstractIn the fragmentation of a transversely polarized quark several left–right asymmetries are po...
Single-spin asymmetries measured at the HERMES experiment for pions and charged kaons in semi-inclu...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...
Single-spin asymmetries for pions and charged kaons are measured in semi-inclusive deep-inelastic sc...
Single-spin asymmetries for semi-inclusive electroproduction of charged pions in deep-inelastic scat...
Single-spin asymmetries for semi-inclusive electroproduction of charged pions in deep-inelastic scat...
Six azimuthal asymmetry amplitudes, measured for pions and charged kaons in semi-inclusive deep-inel...
The perspectives of two new nonstandard methods of transversal quark polarization measurement are co...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
A set of measurements of azimuthal asymmetries in the production of pairs of identified hadrons in d...
International audienceIn the fragmentation of a transversely polarized quark several left-right asym...
Azimuthal single-spin asymmetries of leptoproduced pions and charged kaons were measured on a transv...
Azimuthal single-spin asymmetries of leptoproduced pions and charged kaons were measured on a transv...
AbstractSingle-spin asymmetries for pions and charged kaons are measured in semi-inclusive deep-inel...
Azimuthal distributions in hadron production were measured in unpolarized deep inelastic scattering ...
AbstractIn the fragmentation of a transversely polarized quark several left–right asymmetries are po...
Single-spin asymmetries measured at the HERMES experiment for pions and charged kaons in semi-inclu...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...
Single-spin asymmetries for pions and charged kaons are measured in semi-inclusive deep-inelastic sc...
Single-spin asymmetries for semi-inclusive electroproduction of charged pions in deep-inelastic scat...
Single-spin asymmetries for semi-inclusive electroproduction of charged pions in deep-inelastic scat...
Six azimuthal asymmetry amplitudes, measured for pions and charged kaons in semi-inclusive deep-inel...
The perspectives of two new nonstandard methods of transversal quark polarization measurement are co...
Measuring single spin asymmetries in semi-inclusive deep-inelastic scattering (SIDIS) on a transvers...
A set of measurements of azimuthal asymmetries in the production of pairs of identified hadrons in d...
International audienceIn the fragmentation of a transversely polarized quark several left-right asym...
Azimuthal single-spin asymmetries of leptoproduced pions and charged kaons were measured on a transv...
Azimuthal single-spin asymmetries of leptoproduced pions and charged kaons were measured on a transv...
AbstractSingle-spin asymmetries for pions and charged kaons are measured in semi-inclusive deep-inel...
Azimuthal distributions in hadron production were measured in unpolarized deep inelastic scattering ...
AbstractIn the fragmentation of a transversely polarized quark several left–right asymmetries are po...
Single-spin asymmetries measured at the HERMES experiment for pions and charged kaons in semi-inclu...
Nucleons such as protons and neutrons are composite objects made of quarks, which are bound together...