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- W2904973181 abstract "Studies of the hadron formation in hard processes on nuclei were focusing on hadrons in the current fragmentation region. Little is known about the space-time picture of formation of hadrons in the nucleus fragmentation region, in particular, in deep inelastic scattering (DIS). Study of the nucleus decay via emission of neutrons provides a rare opportunity to probe this domain at collider energies. This paper reports on the hybrid dynamical+statistical (GiBUU+SMM) calculations of neutron production in proton-, muon- and virtual photon-induced collisions with nuclei. We confirm the conclusion that the E665 data on neutron production in $mu^-$ + Pb DIS indicate a strong suppression of the final state interaction for hadrons with momenta above a value as low as $sim 1$ GeV/c. This is well below the momentum range for which formation time and color transparency effects become important. In a short-run perspective, the ultraperipheral heavy-ion collisions at the LHC and RHIC can be used to test this suppression. We focus on the direct photon process in which a photon coherently emitted by one nucleus interacts with a gluon from another nucleus producing a pair of jets. We present our predictions for the neutron multiplicity distributions and $p_t$-spectra in photon - nucleus collisions at the energies accessible at the LHC and RHIC for direct photon kinematics for several models of hadron formation. We argue that ultimately studies of the neutron production in $gamma A$ collisions would open a new window on the small $x$ dynamics and hadron component of the photon wave function." @default.
- W2904973181 created "2018-12-22" @default.
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- W2904973181 date "2018-12-19" @default.
- W2904973181 modified "2023-09-27" @default.
- W2904973181 title "Slow neutron production as a probe of nuclear transparency and hadron formation in high-energy $gamma^*A$ reactions" @default.
- W2904973181 hasPublicationYear "2018" @default.
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