Large-angle production of charged pions with incident pion beams on nuclear targets
The HARP Collaboration: M. Apollonio, A. Artamonov, A. Bagulya, G., Barr, A. Blondel, F. Bobisut, M. Bogomilov, M. Bonesini, C. Booth, S. Borghi,, S. Bunyatov, J. Burguet-Castell, M.G. Catanesi, A. Cervera-Villanueva, P., Chimenti, L. Coney, E. Di Capua, U. Dore, J. Dumarchez

TL;DR
This paper reports detailed measurements of charged pion production cross-sections from various nuclear targets using pion beams at CERN, providing valuable data for particle physics models and simulations.
Contribution
It presents new double-differential cross-section data for pion production across multiple targets and beam energies, enhancing existing particle interaction models.
Findings
Data agree with some Monte Carlo models but highlight discrepancies in others.
Provides comprehensive cross-section measurements for multiple target materials.
Enhances understanding of pion production mechanisms at different energies.
Abstract
Measurements of the double-differential pi+/- production cross-section in the range of momentum 100 MeV/c <= p <= 800 MeV/c and angle 0.35 rad <= theta <= 2.15 rad using pi+/- beams incident on beryllium, aluminium, carbon, copper, tin, tantalum and lead targets are presented. The data were taken with the large acceptance HARP detector in the T9 beam line of the CERN Proton Synchrotron. The secondary pions were produced by beams in a momentum range from 3 GeV/c to 12.9 GeV/c hitting a solid target with a thickness of 5% of a nuclear interaction length. The tracking and identification of the produced particles was performed using a small-radius cylindrical time projection chamber (TPC) placed inside a solenoidal magnet. Incident particles were identified by an elaborate system of beam detectors. Results are obtained for the double-differential cross-sections d2sigma/dpdtheta at six…
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