Quenching of single-particle strength from direct reactions with stable and rare-isotope beams
arXiv:2012.12553 · doi:10.1016/j.ppnp.2021.103847
Abstract
In this review article we discuss the present status of direct nuclear reactions and the nuclear structure aspects one can study with them. We discuss the spectroscopic information we can assess in experiments involving transfer reactions, heavy-ion-induced knockout reactions and quasifree scattering with (p,2p), (p,pn), and (e,e'p) reactions. In particular, we focus on the proton-to-neutron asymmetry of the quenching of the spectroscopic strength.
138 pages, 63 figures
References in corpus (38)
- Chiral effective field theory and nuclear forces
- Nuclear Force from Lattice QCD
- Accurate nuclear radii and binding energies from a chiral interaction
- Probing Cold Dense Nuclear Matter
- Minimally non-local nucleon-nucleon potentials with chiral two-pion exchange including 's
- Systematics of intermediate-energy single-nucleon removal cross sections
- Nuclear Structure Relevant to Neutrinoless Double Beta Decay: 76Ge and 76Se
- The continuum discretized coupled-channels method and its applications
- A proton density bubble in the doubly magic Si nucleus
- Optical potential from first principles
- MOMDIS: a Glauber model computer code for knockout reactions
- Asymmetry dependence of proton correlations
- Elastic proton scattering of medium mass nuclei from coupled-cluster theory
- Quasiparticle and quasihole states of nuclei around 56Ni
- New Results on Short-Range Correlations in Nuclei
- Survey of excited state neutron spectroscopic factors for Z=8-28 nuclei
- Unified description of Li structure and deuterium-He dynamics with chiral two- and three-nucleon forces
- Novel applications of the dispersive optical model
- Mechanisms in knockout reactions
- Quasiparticles in Neon using the Faddeev Random Phase Approximation
- High-j single-particle neutron states outside the N=82 core
- Nonlocal extension of the dispersive-optical-model to describe data below the Fermi energy
- Uncertainty Quantification for Optical Model Parameters
- Investigating the link between proton reaction cross sections and the quenching of proton spectroscopic factors in Ca
- Isotopically resolved neutron total cross sections at intermediate energies
- An experimental study of the rearrangements of valence protons and neutrons amongst single-particle orbits during double β decay in 100Mo
- Applicability of the continuum-discretized coupled-channels method to the deuteron breakup at low energies
- Rearrangement of valence neutrons in the neutrinoless double- decay of Xe
- One-neutron knockout from Ni
- All orders proton breakup from exotic nuclei
- Relativistic eikonal description of A(p,pN) reactions
- Elastic nucleon-nucleus scattering as a direct probe of correlations beyond the independent-particle model
- On the density dependence of single-proton and two-proton knockout reactions under quasifree conditions
- Neutron single-particle strength in silicon isotopes: Constraining the driving forces of shell evolution
- The structure of 70Fe: Single-particle and collective degrees of freedom
- Comparison of semiclassical transfer to continuum model with Ichimura-Austern-Vincent model in medium energy knockout reactions
- Elastic breakup cross sections of well-bound nucleons
- Non-observability of Spectroscopic Factors
Cited by in corpus (8)
- Quenching of Single-Particle Strength in A=15 Nuclei
- Level Structures of Ca Cast Doubt on a doubly magic Ca
- Nuclear Spectroscopy with Heavy Ion Nucleon Knockout and (p,2p) Reactions
- Comparison of semiclassical transfer to continuum model with Ichimura-Austern-Vincent model in medium energy knockout reactions
- A First Glimpse at the Shell Structure beyond Ca: Spectroscopy of K, Ca, and Ca
- Single-particle spectroscopic strength from nucleon transfer reactions with a three-nucleon force contribution
- Models of breakup: a final state interaction problem. In memory of Mahir Hussein
- The Hussein-McVoy formula for inclusive breakup revisited. A Tribute to Mahir Hussein