BACKWARD PRODUCTION OF LIGHT IONS IN THE INTERACTION OF 400-GEV PROTONS WITH NUCLEI

Frankel, S. ; Frati, W. ; Gazzaly, M. ; et al.
Phys.Rev.C 20 (1979) 2257-2266, 1979.
Inspire Record 148390 DOI 10.17182/hepdata.10185

Measurements of the invariant cross sections for the reaction p(400 GeV)+(Li6, Be,C,Al,Cu,Ta)→(d, t, He3, He4)+X at laboratory angles of 70, 90, 118, 137, and 160° are reported. Comparisons are made using several scaling variables. NUCLEAR REACTIONS Inclusive cross section; 400 GeV incident protons; Li6, Be, C, Al, Cu, Ta targets; production of d, t, He3, He4; Lab angles 70°, 90°, 118°, 137°, and 160°.

77 data tables

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The yields of particles of 1 and 2 charges from proton interactions on $^{58}Ni$ and $^{64}Ni$ targets at 7.54 GeV energy

Krasnov, L.V. ; Lakomkin, Yu.A. ; Litvin, V.F. ; et al.
JINR-1-84-225, 2016.
Inspire Record 1501543 DOI 10.17182/hepdata.76287

None

11 data tables

Axis error includes +- 20/20 contribution.

Axis error includes +- 20/20 contribution.

Axis error includes +- 20/20 contribution.

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Evolution of a spallation reaction: experiment and Monte Carlo simulation

Enke, M. ; Herbach, C.M. ; Hilscher, D. ; et al.
Nucl.Phys.A 657 (1999) 317-339, 1999.
Inspire Record 1389773 DOI 10.17182/hepdata.36170

Reaction cross sections and production cross sections for neutrons, hydrogen, and helium have been measured for 1.2, 1.8 GeV p+Fe, Ni, Ag, Ta, W, Au, Pb and U and are compared with different intra-nuclear-cascade- combined with evaporation-models. Agreement for neutrons and considerable differences for light charged particles are observed between experiment and calculation as well as between different models. The discrepancies are associated with specific deficiencies in the models. The exclusive data measured with two 4π-detectors for neutron and charged particle detection allowed furthermore a systematic comparison of observables characteristic of different stages of the temporal evolution of a spallation reaction: inelastic collision probability, excitation energy distribution, pre-equilibrium emission, and inclusive production cross sections.

5 data tables

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Composite particle production in relativistic Au + Pt, Si + Pt, and p + Pt collisions

The E886 collaboration Saito, N. ; Bassalleck, B. ; Burger, T. ; et al.
Phys.Rev.C 49 (1994) 3211-3218, 1994.
Inspire Record 383739 DOI 10.17182/hepdata.25998

Recently, highly relativistic Au beams have become available at the Brookhaven National Laboratory, Alternating Gradient Synchrotron. Inclusive production cross sections for composite particles, d, t, He3, and He4, in 11.5A GeV/c Au+Pt collisions have been measured using a beam line spectrometer. For comparison, composite particle production was also measured in Si+Pt and p+Pt collisions at similar beam momenta per nucleon (14.6A GeV/c and 12.9 GeV/c, respectively). The projectile dependence of the production cross section for each composite particle has been fitted to Aprojα. The parameter α can be described by a single function of the mass number and the momentum per nucleon of the produced particle. Additionally, the data are well described by momentum-space coalescence. Comparisons with similar analysis of Bevalac A+A data are made. The coalescence radii extracted from momentum-space coalescence fits are used to determine reaction volumes (‘‘source size’’) within the context of the Sato-Yazaki model.

3 data tables

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He-3 and He-4 production by 800-MeV protons from C-12, Ti, and Pb at forward angles

Barlow, D.B. ; Nefkens, B.M.K. ; Pillai, C. ; et al.
Phys.Rev.C 45 (1992) 293-298, 1992.
Inspire Record 337057 DOI 10.17182/hepdata.26108

The doubly differential cross section for the production of He3 and He4 by 800 MeV protons from C12, Ti, and Pb has been measured at laboratory angles of 6° and 15°. The momentum of the detected helium nuclei varied from 1 to 2 GeV/c, the maximum being well above the incident proton momentum of 1.46 GeV/c. The cross sections were found to increase with increasing target mass and decrease with increasing momentum and scattering angle. In our momentum region, the He3 production cross section is 1.5–10 times larger than He4 depending on the target and the momentum. The data are consistent with the hypothesis that the dominant reaction mechanism is a direct process where the initial nucleon-nucleon scattering is followed by a sequential pickup of neutrons.

8 data tables

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PRODUCTION OF Tb-149 FROM Gd, Tb, Ho, Tm, Ta, Au BY 1-GeV PROTONS

Alexandrov, A.A. ; Konev, V.G. ; Mironov, Yu.T. ;
LENINGRAD-87-1339, 1987.
Inspire Record 253912 DOI 10.17182/hepdata.38001

None

1 data table

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Inelastic Interaction of High-Energy Particles with Light Nuclei and Cluster Structure of Nuclei

Avdeichikov, V.V ; Bogatin, V.I. ; Lozhkin, O.V. ;
Yad.Fiz. 25 (1977) 3-15, 1977.
Inspire Record 123727 DOI 10.17182/hepdata.18296

None

8 data tables

ANGLE ER.D(OMEGA) = 1.990000000 MSR.

ANGLE ER.D(OMEGA) = 1.990000000 MSR.

ANGLE ER.D(OMEGA) = 1.990000000 MSR.

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