The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of TMDs and GPDs has become, in the last decade, a cutting-edge research field in hadron physics. These non-perturbative objects, respectively measurable in semi-inclusive deep-inelastic scattering and exclusive processes, allow to obtain 3-dimensional representations of the nucleon in the momentum and spatial coordinates as well as indirect insights into the still unknown parton orbital angular momentum. The HERMES experiment at HERA has been a precursor in this field. A selection of HERMES results sensitive to both TMDs and GPDs is presented
After fifty years of investigations, the nucleon structure is still far from being understood and co...
An overview of more recent and important results from the HERMES experiment is presented in this pap...
Hard exclusive production in deep inelastic lepton scattering provides new access to the poorly know...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The HERMES experiment collected from 1995 to 2007 a wealth of deep-inelastic scattering data using 2...
It the last decades, a formalism of transverse momentum dependent parton distribution functions (TMD...
The HERMES experiment has collected a wealth of deep-inelastic scattering data using the 27.6 GeV po...
After 50 years of investigations, the nucleon is still far from being understood and continues to re...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
The HERMES experiment has collected a wealth of deep-inelastic sca ering data using the 27.6 GeV pol...
An overview of more recent and important results from the HERMES experiment are presented in this pa...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
An overview of more recent and important results from the HERMES experiment is presented in this pap...
Hard exclusive production in deep inelastic lepton scattering provides new access to the poorly know...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The study of the quantum phase-space distribution of quarks and gluons inside nucleons in terms of T...
The HERMES experiment collected from 1995 to 2007 a wealth of deep-inelastic scattering data using 2...
It the last decades, a formalism of transverse momentum dependent parton distribution functions (TMD...
The HERMES experiment has collected a wealth of deep-inelastic scattering data using the 27.6 GeV po...
After 50 years of investigations, the nucleon is still far from being understood and continues to re...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
The HERMES experiment has collected a wealth of deep-inelastic sca ering data using the 27.6 GeV pol...
An overview of more recent and important results from the HERMES experiment are presented in this pa...
After fifty years of investigations, the nucleon structure is still far from being understood and co...
An overview of more recent and important results from the HERMES experiment is presented in this pap...
Hard exclusive production in deep inelastic lepton scattering provides new access to the poorly know...