Neutron-proton asymmetry dependence of spectroscopic factors in Ar isotopes
arXiv:0911.4857 · doi:10.1103/PhysRevLett.104.112701
Abstract
Spectroscopic factors have been extracted for proton rich 34Ar and neutron rich 46Ar using the (p,d) neutron transfer reaction. The experimental results show little reduction of the ground state neutron spectroscopic factor of the proton rich nucleus 34Ar compared to that of 46Ar. The results suggest that correlations, which generally reduce such spectroscopic factors, do not depend strongly on the neutron-proton asymmetry of the nucleus in this isotopic region as was reported in knockout reactions. The present results are consistent with results from systematic studies of transfer reactions but inconsistent with the trends observed in knockout reaction measurements.
11 pages, 2 figures. submitted to PRL
References in corpus (2)
Cited by in corpus (36)
- Towards Understanding Astrophysical Effects of Nuclear Symmetry Energy
- Nucleon Effective Masses in Neutron-Rich Matter
- Systematics of intermediate-energy single-nucleon removal cross sections
- Quenching of single-particle strength from direct reactions with stable and rare-isotope beams
- Chiral three-nucleon forces and the evolution of correlations along the oxygen isotopic chain
- Recent developments for the optical model of nuclei
- Optical potentials for the rare-isotope beam era
- Microscopic self-energy calculations and dispersive optical-model potentials
- Binding-energy independence of reduced spectroscopic strengths derived from (p, 2p) and (p, pn) reactions with nitrogen and oxygen isotopes
- Adiabatic versus Faddeev for (d,p) and (p,d) reactions
- Novel applications of the dispersive optical model
- Nonlocal extension of the dispersive-optical-model to describe data below the Fermi energy
- Improved description of Ar(p,d) transfer reactions
- Finite-range effects in (d,p) reactions
- Validity of the distorted-wave impulse-approximation description of CaK data using only ingredients from a nonlocal dispersive optical model
- Experimental study of intruder components in light neutron-rich nuclei via single-nucleon transfer reaction
- Rapid convergence of the Weinberg expansion of the deuteron stripping amplitude
- Quenching of Single-Particle Strength in A=15 Nuclei
- Transfer reactions and the dispersive optical-model
- Spectroscopy of 46Ar by the (t,p) two-neutron transfer reaction
- Spectroscopy of P using the one-proton knockout reaction
- Nuclear Spectroscopy with Heavy Ion Nucleon Knockout and (p,2p) Reactions
- Halo effective field theory analysis of one-neutron knockout reactions of and
- Shell evolution approaching the N=20 island of inversion: structure of 26Na
- Comparison of semiclassical transfer to continuum model with Ichimura-Austern-Vincent model in medium energy knockout reactions
- Shell evolution approaching the N=20 island of inversion: Structure of 29Mg
- Isospin dependence of nucleon Correlations in ground state nuclei
- Benchmarking Faddeev and transfer-to-the-continuum calculations for (p, pN ) reactions
- Many-body effects in (p,pN) reactions within a unified approach
- Green's Function Knockout Formalism
- Single-proton removal reaction in the IQMD+GEMINI model benchmarked by elemental fragmentation cross sections of on carbon at 230~MeV/nucleon
- Three-nucleon forces in exotic open-shell isotopes
- Possible determination of high-lying single particle components with (p,d) reactions
- Nuclear structure and direct reaction studies in particle- coincidence experiments at the FSU John D. Fox Superconducting Linear Accelerator Laboratory
- Tracking rare-isotope beams with microchannel plates
- Models of breakup: a final state interaction problem. In memory of Mahir Hussein