The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic scattering is measured using the CLAS detector in Hall B at Jefferson Lab and a 5.014 GeV electron beam. We report the Kos multiplicity ratios for targets of C, Fe, and Pb relative to deuterium as a function of the fractional virtual photon energy z transferred to the Kos and the transverse momentum squared P2T of the Kos. We find that the multiplicity ratios for Kos are reduced in the nuclear medium at high z and low P2T, with a trend for the Kos transverse momentum to be broadened in the nucleus for large P2T
The CLAS experiment E02-104, part of the EG2 run at Jefferson Lab, was performed to study the hadron...
Background: Energetic quarks in nuclear deep-inelastic scattering propagate through the nuclear medi...
The K$^{-}$ over K$^{+}$ multiplicity ratio is measured in deep-inelastic scattering, for the first ...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
Submitted to Phys. Lett. BThe influence of cold nuclear matter on lepto-production of hadrons in sem...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
We report the K(s)(0) multiplicity ratios for targets of C, Fe, and Pb relative to deuterium as a fu...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
First measurement of double-hadron production in deep-inelastic scattering has been measured with th...
The first measurements of double-hadron production in deep-inelastic scattering within the nuclear m...
Hadronization is the non-perturbative process of QCD by which partons become hadrons. It has been st...
The CLAS experiment E02-104, part of the EG2 run at Jefferson Lab, was performed to study the hadron...
Background: Energetic quarks in nuclear deep-inelastic scattering propagate through the nuclear medi...
The K$^{-}$ over K$^{+}$ multiplicity ratio is measured in deep-inelastic scattering, for the first ...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
Submitted to Phys. Lett. BThe influence of cold nuclear matter on lepto-production of hadrons in sem...
The influence of cold nuclear matter on lepto-production of hadrons in semi-inclusive deep inelastic...
We report the K(s)(0) multiplicity ratios for targets of C, Fe, and Pb relative to deuterium as a fu...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
The influence of the nuclear medium on lepto-production of hadrons was studied in the HERMES experim...
First measurement of double-hadron production in deep-inelastic scattering has been measured with th...
The first measurements of double-hadron production in deep-inelastic scattering within the nuclear m...
Hadronization is the non-perturbative process of QCD by which partons become hadrons. It has been st...
The CLAS experiment E02-104, part of the EG2 run at Jefferson Lab, was performed to study the hadron...
Background: Energetic quarks in nuclear deep-inelastic scattering propagate through the nuclear medi...
The K$^{-}$ over K$^{+}$ multiplicity ratio is measured in deep-inelastic scattering, for the first ...