Total Photoabsorption Cross Sections of A=6 Nuclei with Complete Final State Interaction
arXiv:nucl-th/0112067 · doi:10.1103/PhysRevLett.89.052502
Abstract
The total photoabsorption cross sections of 6He and 6Li are calculated microscopically with full inclusion of the six-nucleon final state interaction using semirealistic nucleon-nucleon potentials. The Lorentz Integral Transform (LIT) method and the effective interaction approach for the hyperspherical formalism are employed. While 6Li has a single broad giant resonance peak, there are two well separated peaks for 6He corresponding to the breakup of the neutron halo and the alpha core, respectively. The comparison with the few available experimental data is discussed.
LaTeX, 8 pages, 3 ps figures
References in corpus (1)
Cited by in corpus (42)
- The Lorentz Integral Transform (LIT) method and its applications to perturbation induced reactions
- Giant Dipole Resonance as a Fingerprint of Clustering Configurations in C and O
- All the Fun of the FAIR: Fundamental physics at the Facility for Antiproton and Ion Research
- First principles description of the giant dipole resonance in 16O
- Modern Ab Initio Approaches and Applications in Few-Nucleon Physics with A \ge 4
- Giant and pigmy dipole resonances in 4He, 16,22O, and 40Ca from chiral nucleon-nucleon interactions
- Infrared length scale and extrapolations for the no-core shell model
- From bound states to the continuum
- New inversion methods for the Lorentz Integral Transform
- Matter and charge radius of 6He in the hyperspherical-harmonics approach
- Analytical transformed harmonic oscillator basis for three-body nuclei of astrophysical interest: Application to 6He
- Ab initio calculation of Li7 photodisintegration
- Computing the dipole polarizability of 48Ca with increased precision
- Effect of P-wave interaction in 6He and 6Li photoabsorption
- Helium halo nuclei from low-momentum interactions
- Inclusive electron scattering off 4He
- Machine learning-based inversion of nuclear responses
- Benchmark calculation of inclusive electromagnetic responses in the four-body nuclear system
- Neutrino neutral reaction on 4He, effects of final state interaction and realistic NN force
- The Lorentz Integral Transform and its Inversion
- Electric dipole response of He: Halo-neutron and core excitations
- Photodisintegration of light nuclei for testing a correlated realistic interaction in the continuum
- Electromagnetic observables of open-shell nuclei from coupled-cluster theory
- The HeH Reaction with Full Final--State Interaction
- The nuclear electric polarizability of 6He
- Case study: calculation of a narrow resonance with the LIT method
- Emergence of nuclear clustering in electric-dipole excitations of Li
- High precision studies of soft dipole mode in two-neutron halo nuclei: He case
- Photon Scattering with the Lorentz Integral Transform Method
- The Auxiliary Field Diffusion Monte Carlo Method for Nuclear Physics and Nuclear Astrophysics
- On the Accuracy of Hyperspherical Harmonics Approaches to Photonuclear Reactions
- Spectral function for He using the Chebyshev expansion in coupled-cluster theory
- -Photoproduction on the deuteron via -excitation using the Lorentz Integral Transform
- Long Range Tensor Correlations in Charge and Parity Projected Fermionic Molecular Dynamics
- Electromagnetic reactions of few-body systems with the Lorentz integral transform method
- Dineutron in the state of He
- How to increase the applicability of integral transform approaches in physics?
- Electromagnetic break-up of nuclei with A = 3 - 7
- Optimized binning for response function reconstruction via Chebyshev expansions
- Muonic Lithium atoms: nuclear structure corrections to the Lamb shift
- Electromagnetic sum rules for 22O from coupled-cluster theory
- Is the isoscalar monopole resonance of the -particle a collective mode?