Interactions of ultrarelativistic oxygen nuclei in emulsion

El-Nadi, M. ; El-Nagdy, M.S. ; Abd-Alla, A.M. ;
Phys.Rev.C 48 (1993) 870-876, 1993.
Inspire Record 363778 DOI 10.17182/hepdata.4987

The results of the multiplicity distributions of shower, grey, black, and heavily ionizing charged particles from induced16 reactions at 200A GeV are presented. The results are compared with the predictions of the Lund Monte Carlo code fritiof, the multichain model by Ranft, and the Monte Carlo code venus.

6 data tables

NUCLEUS - AVERAGE NUCLEI OF EMULSION.

NUCLEUS - AVERAGE NUCLEI OF EMULSION.

NUCLEUS - AVERAGE NUCLEI OF EMULSION.

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Multiplicity characteristics of particles produced in C-12 emulsion collisions at 4.5-A/GeV/c

Ahmad, M.S. ; Khan, M.Q.R. ; Siddique, K.A. ; et al.
Int.J.Mod.Phys.A 10 (1995) 845-857, 1995.
Inspire Record 401127 DOI 10.17182/hepdata.40450

Experimental data on multiplicities and correlations of charged particles of different types produced in collisions of 4.5 A GeV/c carbon-12 with emulsion are reported and discussed. The data are compared with the results of other experiments on nucleus–nucleus and hadron–nucleus collisions. It is found that the particle production mechanism in nucleus–nucleus collisions is almost the same as in hadron–nucleus collisions. It is also observed that the shower particles' multiplicity distributions obey a KNO type scaling law, which supports the aforementioned result.

9 data tables

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NUCLEUS IS NUCLEAR PHOTOEMULSION. EVENT WITH A TOTAL CHARGE OF ALL SPECTATOR FRAGMENTS OF A PROJECTILE = 0.

NUCLEUS IS NUCLEAR PHOTOEMULSION. EVENT WITH A TOTAL CHARGET OF ALL SPECTATOR FRAGMENTS OF A PROJECTILE = 1.

NUCLEUS IS NUCLEAR PHOTOEMULSION.

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Interactions of 200-GeV/nucleon O-16 and S-32 ions in nuclear emulsions

Baroni, G. ; Bisi, V. ; Breslin, A.C. ; et al.
Nucl.Phys.A 531 (1991) 691-708, 1991.
Inspire Record 313983 DOI 10.17182/hepdata.36711

This paper presents and contrasts features of the inelastic nuclear reactions of 200 GeV/nucleon 16 O and 32 S ions with emulsion nuclei. Both the multiplicities of shower particles and the extent of target fragmentation have been studied for varying degress of disruption of the projectile nuclei. The results may be interpreted within a simple geometrical model. In particular the rapidity distributions of those events which exhibit complete projectile break-up without any overt sign of low-energy target fragmentation have been determined. The interaction of secondary projectile fragments of charge two or more issuing from oxygen interactions were also studied and the mean free paths in emulsion of the primary 16 O and 32 S ions and all such fragments have been compared to those predicted by a simple Glauber model.

7 data tables

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