4.5 Article

Structure of 13Be studied in proton knockout from 14B

期刊

PHYSICAL REVIEW C
卷 98, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.98.024603

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资金

  1. Ministerio de Ciencia e Innovacion (Spain) [BES-2010-042262, FPA2009-07387]
  2. Spanish Ministerio de Economia y Competitividad (MINECO) [FPA2015-65035-P, FPA2012-32443, FPA2011-24553, FPA2011-29854-C04-01, FPA2013-41267-P, FPA2014-52823-C2-1-P, FPA2015-64969-P, FPA2017-87568-P]
  3. European Union by means of the European Commission within its Seventh Framework Programme (FP7) via ENSAR [262010]
  4. NAVI
  5. GSI-TU Darmstadt cooperation
  6. HIC for FAIR
  7. EMMI
  8. BMBF
  9. DFG [SFB1245, 05P15RDFN1]
  10. U.S. DOE [DE-FG02-08ER41533]
  11. U.S. NSF [1415656]
  12. STFC [ST/L005751/1, ST/P004598/1, ST/I504967/1, 2017 STFC Nuclear Physics CG, ST/L005670/1, ST/E500651/1, ST/G000727/1, ST/P004199/1, ST/P003885/1] Funding Source: UKRI
  13. Science and Technology Facilities Council [ST/P004598/1, ST/G000662/1, ST/G000727/1, ST/I504967/1, ST/P003885/1, ST/L005670/1, 2017 STFC Nuclear Physics CG] Funding Source: researchfish

向作者/读者索取更多资源

The neutron-unbound isotope Be-13 has been studied in several experiments using different reactions, different projectile energies, and different experimental setups. There is, however, no real consensus in the interpretation of the data, in particular concerning the structure of the low-lying excited states. Gathering new experimental information, which may reveal the Be-13 structure, is a challenge, particularly in light of its bridging role between Be-12, where the N = 8 neutron shell breaks down, and the Borromean halo nucleus Be-14. The purpose of the present study is to investigate the role of bound excited states in the reaction product Be-12 after proton knockout from B-14, by measuring coincidences between Be-12, neutrons, and gamma rays originating from de-excitation of states fed by neutron decay of Be-13. The Be-13 isotopes were produced in proton knockout from a 400 MeV/nucleon B-14 beam impinging on a CH2 target. The Be-12-n relative-energy spectrum d sigma/dE(fn) was obtained from coincidences between Be-12(g.s.) and a neutron, and also as threefold coincidences by adding gamma rays, from the de-excitation of excited states in Be-12. Neutron decay from the first 5/2(+) state in Be-13 to the 2(+) state in Be-12 at 2.11 MeV is confirmed. An energy independence of the proton-knockout mechanism is found from a comparison with data taken with a 35 MeV/nucleon B-14 beam. A low-lying p-wave resonance in Be-13(1/2(-)) is confirmed by comparing proton- and neutron-knockout data from B-14 and Be-14.

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