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Makale detayı · 2022

Analysis of the one-neutron transfer reaction in O18+Se76 collisions at 275 MeV

Dergi

Physical Review C

ISSN 2469-9985

YÖKSİS OpenAlex Açık erişim · green SJR Q1 JCR Q2 Atıf 35 Üst %10 Yüzdelik 98.6% FWCI 3.36
Yıl
2022
Tür
article

Veri kaynağı ayrımı

  • YÖKSİS YÖKSİS makale kaydı
  • YÖKSİS dergi adı Physical Review C
  • Katalog eşleşmesi (ISSN) Physical Review C
  • OpenAlex OpenAlex zenginleştirmesi (özet, atıf, konular)

Özet

OpenAlex · lv

Background: Heavy-ion one-nucleon transfer reactions are promising tools to investigate single-particle configurations in nuclear states with and without the excitation of the core degrees of freedom. A careful determination of the spectroscopic amplitudes of these configurations is essential for the accurate study of other direct reactions as well as $\ensuremath{\beta}$ decays. In nucleon transfer reactions core excitations, for both target and projectile systems, are best approached via coupled-channels reaction schemes. Despite being notoriously demanding in terms of computing resources, coupled-channels analyses are progressively becoming more affordable even within model spaces large enough for tackling medium mass nuclei. In this context, the $^{76}\mathrm{Se}(^{18}\mathrm{O},^{17}\mathrm{O})^{77}\mathrm{Se}$ reaction, here under study, gives a quantitative access to the relevant single-particle orbitals and core polarization configurations built on $^{76}\mathrm{Se}$. This is particularly relevant, since it provides data-driven information to constrain nuclear structure models for $^{76}\mathrm{Se}$, which is the daughter nucleus in the $^{76}\mathrm{Ge} \ensuremath{\beta}\ensuremath{\beta}$ decay. This reaction is one of the systems studied in the frame of the Nuclear Matrix Elements for Neutrinoless double beta decay project.Purpose: We want to analyze transitions to low-lying excited states of the residual and ejectile nuclei in the $^{76}\mathrm{Se}(^{18}\mathrm{O},^{17}\mathrm{O})^{77}\mathrm{Se}$ one-neutron stripping reaction at 275-MeV incident energy and determine the role of single-particle and core excitation in the description of the measured cross sections. In addition, we explore the sensitivity of the calculated cross section to different nuclear structure models.Methods: The excitation energy spectrum and the differential cross-section angular distributions are measured using the MAGNEX large acceptance magnetic spectrometer for the detection of the ejectiles and the missing mass technique for the reconstruction of the reaction kinematics. The data are compared with calculations based on distorted-wave Born approximation, coupled-channels Born approximation, and coupled reaction channels adopting spectroscopic amplitudes for the projectile and target overlaps derived by large-scale shell-model calculations and interacting boson-fermion model.Results: Peaks in the energy spectra corresponding to groups of unresolved transitions to $^{77}\mathrm{Se}$ and $^{17}\mathrm{O}$ are identified. The experimental cross sections are extracted and compared to theoretical calculations. A remarkable agreement is found, without using any scaling factors, demonstrating that the adopted models for nuclear structure and reaction take into account the relevant aspects of the studied processes. The main transitions which contribute to the cross section of each peak are identified.Conclusions: The coupling with the inelastic channels feeding states in entrance and exit partitions is important in the one-neutron transfer reaction and should be accounted for in future analyses of other direct reactions such as single and double charge exchange processes involving $^{76}\mathrm{Se}$ isotope. The description of $^{77}\mathrm{Se}$ indicates the need of a large model space, in the view of an accurate description of the low-lying states, a feature that should be likely accounted even for $\ensuremath{\beta}\ensuremath{\beta}$-decay studies of $^{76}\mathrm{Ge}$.

Konular

Atıflar

OpenAlex cited_by_count. WoS veya Scopus atıf sayısı değildir; o kaynaklar için ayrı kolon yoktur.

35 atıf

OpenAlex cited_by_count (önbellek / veritabanı)

Yerel katalogda bu makaleye atıf yapan 21 yayın (OpenAlex referans eşleşmesi; tam dünya listesi değildir).

  1. One-neutron transfer reaction in the O18+Ti48 collision at 275 MeV 2023 Atıf 30 · OpenAlex
  2. Multichannel experimental and theoretical approach to the C12(O18,F18)B12 single-charge-exchange reaction at 275 MeV: Initial-state interaction and single-particle properties of nuclear wave functions 2023 Atıf 30 · OpenAlex
  3. One-neutron transfer reaction in the 18O+48Ti collision at 275 MeV 2023 Atıf 16 · OpenAlex
  4. Multichannel experimental and theoretical approach to the C12(O18,F18)B12 single-charge-exchange reaction at 275 MeV: Initial-state interaction and single-particle properties of nuclear wave functions 2023 Atıf 16 · OpenAlex
  5. O 18 + Ti 48 elastic and inelastic scattering at 275 MeV 2024 Atıf 14 · OpenAlex
  6. Analysis of one-proton transfer reaction in O 18 + Se 76 collisions at 275 MeV 2024 Atıf 11 · OpenAlex
  7. Measurement of the 116Sn(18O,18Ne)116Cd double charge exchange reaction at 276 MeV 2024 Atıf 7 · OpenAlex
  8. 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 2024 Atıf 6 · OpenAlex
  9. A multi–channel study of the 20Ne + 130Te system within the NUMEN project 2023 Atıf 2 · OpenAlex
  10. Study of the one-neutron transfer reaction in 18O + 76Se collision at 275 MeV in the context of the NUMEN project 2023 Atıf 2 · OpenAlex

Yazarlar

  1. I. Ciraldo
  2. F. Cappuzzello
  3. M. Cavallaro
  4. D. Carbone
  5. S. Burrello
  6. A. Spatafora
  7. A. Gargano
  8. G. De Gregorio
  9. G. Vselvolodovna
  10. R.I. Magana
  11. L. Acosta
  12. P. Amador-Valenzuela
  13. T. Borello-Lewin
  14. G.A. Brischetto
  15. S. Calabrese
  16. D. Calvo
  17. V. Capirossi
  18. E.R. Chavez Lomeli
  19. M. Colonna
  20. F. Delaunay
  21. H. Djapo
  22. CANEL EKE AKDENİZ ÜNİVERSİTESİ
  23. P. Finocchiaro
  24. S. Firat
  25. M. Fisichella
  26. A. Foti
  27. AYLİN HACISALİHOĞLU ANKARA ÜNİVERSİTESİ
  28. F. Lazzi
  29. L. La Fauci
  30. R. Linares
  31. N.H. Medina
  32. M. Moralles
  33. J.R.B. Oliveira
  34. A. Pakou
  35. L. Pandola
  36. H. Petrascu
  37. F. Pinna
  38. G. Russo
  39. E. Santopinto
  40. O Sgouros
  41. M.A. Guazzelli
  42. SELÇUK OKTAY SOLAKCI AKDENİZ ÜNİVERSİTESİ
  43. V. Soukeras
  44. G. Souliotis
  45. D. Torresi
  46. S. Tudisco
  47. A. Yildirim
  48. V.A.B. Zagatto