Correlated model for quasi-elastic responses in finite nuclear systems
arXiv:nucl-th/0007039 · doi:10.1006/aphy.2000.6098
Abstract
A model to calculate nuclear responses considering short-range correlation effects is presented. The model is applied to the study of electromagnetic responses induced by one-body operators. We calculate one- and two-nucleon emission responses and cross sections of the 16O and 40Ca nuclei in the quasi-elastic region, and we compare them with experimental data.
56 pages, 19 postscript figures, 4 tables
References in corpus (6)
- Quantum Monte Carlo calculations of nuclei with A \leq 7
- Spin-Isospin Structure and Pion Condensation in Nucleon Matter
- Ground state correlations and mean-field in O
- Ground State Correlations in 16O and 40Ca
- A model of short-range correlations in the charge response
- Two-nucleon emission in the longitudinal response
Cited by in corpus (11)
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- Relativistic Green's function approach to parity-violating quasielastic electron scattering
- Antisymmetrized Green's function approach to reactions with a realistic nuclear density
- Photo-emission of two protons from nuclei
- Short-range correlations and meson exchange currents in photonucleon emission
- A model for two-proton emission induced by electron scattering
- Short-range correlations in semi-exclusive electron scattering experiments
- RPA quasi-elastic responses in infinite and finite nuclear systems
- Proton emission induced by polarized photons