Physics Letters B (Jun 2022)

Neutron-proton pairing in the N=Z radioactive fp-shell nuclei 56Ni and 52Fe probed by pair transfer

  • B. Le Crom,
  • M. Assié,
  • Y. Blumenfeld,
  • J. Guillot,
  • H. Sagawa,
  • T. Suzuki,
  • M. Honma,
  • N.L. Achouri,
  • B. Bastin,
  • R. Borcea,
  • W.N. Catford,
  • E. Clément,
  • L. Cáceres,
  • M. Caamaño,
  • A. Corsi,
  • G. De France,
  • F. Delaunay,
  • N. De Séréville,
  • B. Fernandez-Dominguez,
  • M. Fisichella,
  • S. Franchoo,
  • A. Georgiadou,
  • J. Gibelin,
  • A. Gillibert,
  • F. Hammache,
  • O. Kamalou,
  • A. Knapton,
  • V. Lapoux,
  • S. Leblond,
  • A.O. Macchiavelli,
  • F.M. Marqués,
  • A. Matta,
  • L. Ménager,
  • P. Morfouace,
  • N.A. Orr,
  • J. Pancin,
  • X. Pereira-Lopez,
  • L. Perrot,
  • J. Piot,
  • E. Pollacco,
  • D. Ramos,
  • T. Roger,
  • F. Rotaru,
  • A.M. Sánchez-Benítez,
  • M. Sénoville,
  • O. Sorlin,
  • M. Stanoiu,
  • I. Stefan,
  • C. Stodel,
  • D. Suzuki,
  • J.-C. Thomas,
  • M. Vandebrouck

Journal volume & issue
Vol. 829
p. 137057

Abstract

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The isovector and isoscalar components of neutron-proton pairing are investigated in the N=Z unstable nuclei of the fp-shell through the two-nucleon transfer reaction (p,3He) in inverse kinematics. The combination of particle and gamma-ray detection with radioactive beams of 56Ni and 52Fe, produced by fragmentation at the GANIL/LISE facility, made it possible to carry out this study for the first time in a closed and an open-shell nucleus in the fp-shell. The transfer cross-sections for ground-state to ground-state (J=0+, T=1) and to the first (J=1+, T=0) state were extracted for both cases together with the transfer cross-section ratios σ(0+,T=1)/σ(1+,T=0). They are compared with second-order distorted-wave born approximation (DWBA) calculations. The enhancement of the ground-state to ground-state pair transfer cross-section close to mid-shell, in 52Fe, points towards a superfluid phase in the isovector channel. For the “deuteron-like” transfer, very low cross-sections to the first (J=1+, T=0) state were observed both for 56Ni(p,3He) and 52Fe(p,3He) and are related to a strong hindrance of this channel due to spin-orbit effect. No evidence for an isoscalar deuteron-like condensate is observed.

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