Measurement of charged-pion production in deep-inelastic scattering off nuclei with the CLAS detector
arXiv:2109.09951 · doi:10.1103/PhysRevC.105.015201
Abstract
Background: Energetic quarks in nuclear DIS propagate through the nuclear medium. Processes that are believed to occur inside nuclei include quark energy loss through medium-stimulated gluon bremsstrahlung and intra-nuclear interactions of forming hadrons. More data are required to gain a more complete understanding of these effects. Purpose: To test the theoretical models of parton transport and hadron formation, we compared their predictions for the nuclear and kinematic dependence of pion production in nuclei. Methods: We have measured charged-pion production in semi-inclusive DIS off D, C, Fe, and Pb using the CLAS detector and the CEBAF 5.014 GeV electron beam. We report results on the nuclear-to-deuterium multiplicity ratio for and as a function of energy transfer, four-momentum transfer, and pion energy fraction or transverse momentum - the first three-dimensional study of its kind. Results: The multiplicity ratio is found to depend strongly on the pion fractional energy , and reaches minimum values of , , and for the C, Fe, and Pb targets, respectively. The dependences of the multiplicity ratios for and are equal within uncertainties for C and Fe targets but show differences at the level of 10 for the Pb-target data. The results are qualitatively described by the GiBUU transport model, as well as with a model based on hadron absorption, but are in tension with calculations based on nuclear fragmentation functions. Conclusions: These precise results will strongly constrain the kinematic and flavor dependence of nuclear effects in hadron production, probing an unexplored kinematic region. They will help to reveal how the nucleus reacts to a fast quark, thereby shedding light on its color structure, transport properties, and on the mechanisms of the hadronization process.
22 pages, 5 figures, 12 tables
References in corpus (8)
- Global analysis of fragmentation functions for pions and kaons and their uncertainties
- Electron-Ion Collider in China
- Modified Structure of Protons and Neutrons in Correlated Pairs
- Time Dependent Hadronization via HERMES and EMC Data Consistency
- Coulomb distortion of relativistic electrons in the nuclear electrostatic field
- Estimating the Color Lifetime of Energetic Quarks
- Spacetime development of in-medium hadronization: Scenario for leading hadrons
- Medium modified Fragmentation Functions with open source xFitter
Cited by in corpus (8)
- 50 Years of Quantum Chromodynamics
- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
- The Present and Future of QCD
- Strong Interaction Physics at the Luminosity Frontier with 22 GeV Electrons at Jefferson Lab
- A Better Angle on Hadron Transverse Momentum Distributions at the EIC
- Probing cold nuclear matter with energy correlators
- Observation of azimuth-dependent suppression of hadron pairs in electron scattering off nuclei
- Letter of Intent: The Forward Physics Facility