2007
DOI: 10.1134/s1063778807070137
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Fragmentation channels of relativistic 7Be nuclei in peripheral interactions

Abstract: Nuclei of 7 Li were accelerated at the JINR Nuclotron. After the charge-exchange reaction involving these nuclei at an external target a second 7 Be beam of energy 1.23A GeV was formed.This beam was used to expose photo-emulsion chambers. The mean free path for inelastic 7 Be interactions in emulsion λ=14.0±0.8 cm coincides within the errors with those for 6 Li and 7 Li nuclei.More than 10% of the 7 Be events are associated with the peripheral interactions in which the total charge of the relativistic fragment… Show more

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Cited by 18 publications
(21 citation statements)
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“…In addition, the nuclear-emulsion method should reveal multi-particle channels corresponding in charge topology to the coherent dissociation of the 7 Be [3,11] and 10 B [14] core nuclei in 11 C. An approximate equality of the probabilities for the He + He and He + 2H dominant channels of coherent dissociation is a special feature of the 7 Be nucleus (see Table 1). The respective branching ratio is 1 ± 0.2 according to data of a group from the Lebedev Physical Institute Moscow [3] and 0.7 0.1 according to vaster data sample obtained at JINR [11]. The 2He + H three-body channels are leading ones(of weight about 75%) among 10 B white stars (see Table 2).…”
Section: Potential Of the Nuclear-emulsion Methodsmentioning
confidence: 97%
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“…In addition, the nuclear-emulsion method should reveal multi-particle channels corresponding in charge topology to the coherent dissociation of the 7 Be [3,11] and 10 B [14] core nuclei in 11 C. An approximate equality of the probabilities for the He + He and He + 2H dominant channels of coherent dissociation is a special feature of the 7 Be nucleus (see Table 1). The respective branching ratio is 1 ± 0.2 according to data of a group from the Lebedev Physical Institute Moscow [3] and 0.7 0.1 according to vaster data sample obtained at JINR [11]. The 2He + H three-body channels are leading ones(of weight about 75%) among 10 B white stars (see Table 2).…”
Section: Potential Of the Nuclear-emulsion Methodsmentioning
confidence: 97%
“…Light nuclei can be represented as various superpositions of bound states of lighter nuclear cores, extremely light nuclear clusters (alpha particles, tritons, 3 He nuclei, and deuterons), and nucleons that coexist in dynamical equilibrium. Owing to this variety, the group of nuclei at the beginning of the table of isotopes provides a laboratory for studying the coexistence and evolution of cluster and shell degrees of freedom.…”
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confidence: 99%
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“…[1][2][3][4][5][6] Information on existence of such cluster structures can be obtained by studying various correlations among final products of fragmentation, which can partly be formed from breakup of intermediate excited nuclear remnants (for example, 6 Li*, 7 Li*, 7 Be*, 9 Be*, 10 B*, 12 C*, 14 N*), 3,7,8 as well as from decay of unstable 8 Be and 9 B nuclei. 9 Besides it, the experimentally observed α particles can be the conserved constituents of the initial α cluster structure (especially at small excitations of the fragmenting nucleus).…”
mentioning
confidence: 99%