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Article detail · 2024

Multichannel experimental and theoretical approach to the 12C( 18O, 18F) 12B single-charge-exchange reaction at 275 MeV. II. Competition between the meson exchange and the sequential transfer in the reaction mechanism

Journal

Physical Review C

ISSN 2643-1564

The ISSN points to another catalog journal; the name is from the YÖKSİS record.

YÖKSİS OpenAlex Open access · green SJR Q1 JCR Q1 Citations 6 Top 10% Percentile 93.1% FWCI 2.92
Year
2024
Type
article

Data source split

  • YÖKSİS YÖKSİS article record
  • YÖKSİS venue Physical Review C
  • Catalog match (ISSN) Physical Review Research
  • OpenAlex OpenAlex enrichment (abstract, citations, topics)

Abstract

OpenAlex · lv

Background: Single-charge-exchange reactions are among the most appropriate nuclear tools to study the response of nuclear systems to isovector interaction. Nowadays, the availability of powerful experimental setups and advanced nuclear models bring the possibility of the complete study of the reaction mechanisms involved in the nuclear reactions, also in the case of heavy projectiles. This new possibility allows one to access valuable information on key nuclear structure aspects, including those embedded in the widely searched neutrinoless double-$\ensuremath{\beta}$ decay.Purpose: We intend to elucidate the main nuclear structure and reaction features involved in the $^{18}\mathrm{O}$ $+$ $^{12}\mathrm{C}$ collision at 275 MeV beam incident energy. In this paper, the main focus is to quantify the competition between the sequential two-step transfer and the direct meson-exchange reaction mechanisms.Methods: The energy spectra and cross-section angular distributions for the $^{12}\mathrm{C}(^{18}\mathrm{O},^{18}\mathrm{F})^{12}\mathrm{B}$ single-charge-exchange reaction are measured by the MAGNEX magnetic spectrometer in the same experimental setup of the elastic and inelastic scattering and the one-nucleon transfer reaction channels. The cross sections for the sequential two-step transfer and the direct meson-exchange single-charge-exchange reaction mechanisms are evaluated in a single coherent theoretical calculation, using state-of-the-art nuclear structure and reaction theories.Results: The energy resolution achieved in the study of the $^{12}\mathrm{C}(^{18}\mathrm{O},^{18}\mathrm{F})^{12}\mathrm{B}$ single-charge-exchange reaction allows one to separate the ground-to-ground-state transition and to identify other structures in the measured energy spectra. The coherent sum of the distorted wave Born approximation cross sections of the direct and sequential reaction mechanisms well describes the experimental cross-section angular distributions. The crucial role of the optical model distortion in the scattering of the incoming and outgoing waves was taken into account via the introduction of the coupled-channel local equivalent effective potential.Conclusions: Advanced nuclear structure and reaction models turned out to be appropriate tools for the detailed analysis of single-charge-exchange reactions originating in heavy-ion collisions. This is of particular relevance in several fields of nuclear physics. Moreover, it is inherent to the challenging project to provide valuable information on neutrinoless double-$\ensuremath{\beta}$ decay nuclear matrix elements from single- and double-charge-exchange cross-section measurements.

Topics

Citations

OpenAlex cited_by_count. Not a WoS or Scopus citation count; those sources have no separate column here.

6 citations

OpenAlex cited_by_count (cache / database)

2 publications in the local catalog that cite this work (OpenAlex reference match; not the full global list).

  1. One-nucleon transfer reactions in the 20Ne+76Ge system at Elab=15.3 MeV/u 2025 Citations 1 · OpenAlex
  2. The multichannel approach within the NUMEN project: The 18O + 40Ca at 275 MeV case 2025 Citations 0 · OpenAlex

Authors

  1. Alessandro Spatafora
  2. F. Cappuzzello
  3. D. Carbone
  4. M Cavallaro
  5. De Gregorio G
  6. J A Lay
  7. L Acosta
  8. C Agodi
  9. Paulina Amador Valenzuela
  10. J Bellone
  11. G. A. Brischetto
  12. D Calvo
  13. E. R. Chavez-Lomelli
  14. I. Ciraldo
  15. F Delaunay
  16. HARIS DJAPO
  17. CANEL EKE
  18. P Finocchiaro
  19. S. Firat
  20. M. Fisichella
  21. A Gargano
  22. AYLİN HACISALİHOĞLU ANKARA ÜNİVERSİTESİ
  23. L. La Fauci
  24. H Lenske
  25. R Linares
  26. N Medina
  27. M. Moralles
  28. JRB Oliveira
  29. A. Pakou
  30. L Pandola
  31. S.S. Perrotta
  32. H. Petrascu
  33. O Sgouros
  34. da Silveira M
  35. SELÇUK OKTAY SOLAKCI
  36. Vasilis Soukeras
  37. G. Souliotis
  38. D. Torresi
  39. S Tudisco
  40. Bakytzhan Urazbekov
  41. AYDIN YILDIRIM
  42. Vinicius Zagatto