Interactions in hydrogen of relativistic neon to nickel projectiles: Total charge changing cross-sections

The Transport collaboration Chen, C.X. ; Albergo, S. ; Caccia, Z. ; et al.
Phys.Rev.C 49 (1994) 3200-3210, 1994.
Inspire Record 383738 DOI 10.17182/hepdata.25999

A liquid hydrogen target was used to study the nuclear fragmentation of beams of relativistic heavy ions, Ne22 to Ni58, over an energy range 400 to 900 MeV/nucleon. The experiments were carried out at the Lawrence Berkeley Laboratory Bevalac HISS facility, using the charge-velocity-rigidity method to identify the charged fragments. Here we describe the general concept of the experiment and present total charge-changing cross sections obtained from 17 separate runs. These new measured cross sections display an energy dependence which follows semiempirical model predictions. The mass dependence of the cross sections behaves as predicted by optical models, but within the experimental energy range, the optical model parameters display a clear energy dependence. The isospin of the projectile nuclei also appears to be an important factor in the interaction process.

8 data tables

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Fragmentation Cross-sections of $^{16}$O at 60-{GeV}/nucleon and 200-{GeV}/nucleon

Brechtmann, C. ; Heinrich, W. ;
Z.Phys.A 330 (1988) 407-416, 1988.
Inspire Record 23646 DOI 10.17182/hepdata.16593

We used CR39 plastic nuclear track detectors (C12H18O7) in combination with automatic track measurement to determine total charge changing and partial cross sections for the production of fragments of chargeZ=6 andZ=7 in collisions of16O beam nuclei at energies of 60 GeV/nucleon and 200 GeV/nucleon in targets H, C, CR39, CH2, Al, Cu, Ag and Pb. Total charge changing cross sections due to the process of electromagnetic dissociation are calculated based on a theoretical model and found to be consistent with total and partial electromagnetic dissociation cross sections derived from this experiment. The energy dependence of pure nuclear fragmentation is investigated.

6 data tables

OBS = TOTAL CHARGE CHANGING CROSS SECTION.

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Fragmentation Cross-sections of $^{32}$S at 0.7-{GeV}/nucleon, 1.2-{GeV}/nucleon and 200-{GeV}/nucleon

Brechtmann, C. ; Heinrich, W. ;
Z.Phys.A 331 (1988) 463-472, 1988.
Inspire Record 24135 DOI 10.17182/hepdata.48156

We used CR39 plastic nuclear track detectors (C12H18O7) in combination with automatic track measurement techniques to determine total charge changing and partial cross sections for the production of fragments of chargeZ F =6 toZ F =15 in collisions of32S beam nuclei at energies of 0.7, 1.2 and 200 GeV/nucleon in targets H, C, CR39, CH2, Al, Cu, Ag and Pb. By application of factorization rules measured partial cross sections are separated into pure nuclear and electromagnetic components. Total and partial cross sections for electromagnetic dissociation are compared with theoretical models. The energy dependence of pure nuclear cross sections is investigated.

17 data tables

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NUCLEUS=12C 18H 7O.

NUCLEUS=18C 38H 7O.

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