Formation of Light Isotopes by Protons and Deuterons of 3.65 GeV/nucleon on Separated Tin Isotopes

Phys.Atom.Nucl. 69 (2006) 1485-1495 We measure cross sections for residual nuclide formation in the mass range 6 < A < 97 caused by bombardment with protons and deuterons of 3.65 GeV/nucleon energy of enriched tin isotopes (112-Sn, 118-Sn, 120-Sn, 124-Sn). The experimental data are compared wi...

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Hauptverfasser: Balabekyan, A. R, Danagulyan, A. S, Drnoyan, J. R, Hovhannisyan, G. H, Adam, J, Kalinnikov, V. G, Krivopustov, M. I, Pronskikh, V. S, Stegailov, V. I, Solnyshkin, A. A, Chaloun, P, Tsoupko-Sitnikov, V. M, Mashnik, S. G, Gudima, K. K
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Sprache:eng
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Zusammenfassung:Phys.Atom.Nucl. 69 (2006) 1485-1495 We measure cross sections for residual nuclide formation in the mass range 6 < A < 97 caused by bombardment with protons and deuterons of 3.65 GeV/nucleon energy of enriched tin isotopes (112-Sn, 118-Sn, 120-Sn, 124-Sn). The experimental data are compared with calculations by the codes FLUKA, LAHET, CEM03, and LAQGSM03. Scaling behavior is observed for the whole mass region of residual nuclei, showing a possible multifragmentation mechanism for the formation of light products (6 < A < 31). Our analysis of the isoscaling dependence also shows a possible contribution of multifragmentation to the production of heavier nuclides, in the mass region 39 < A < 81.
DOI:10.48550/arxiv.nucl-ex/0506024