Microscopic calculation of the inclusive electron scattering structure function in O-16
arXiv:nucl-th/9910007 · doi:10.1103/PhysRevLett.84.1403
Abstract
We calculate the charge form factor and the longitudinal structure function for O and compare with the available experimental data, up to a momentum transfer of 4 fm. The ground state correlations are generated using the coupled cluster [exp(S}] method, together with the realistic v-18 NN interaction and the Urbana IX three-nucleon interaction. Center-of-mass corrections are dealt with by adding a center-of-mass Hamiltonian to the usual internal Hamiltonian, and by means of a many-body expansion for the computation of the observables measured in the center-of-mass system.
References in corpus (7)
- Quantum Monte Carlo calculations of nuclei with A \leq 7
- Large-basis shell-model calculations for p-shell nuclei
- Study of bound and scattering states in three-nucleon systems
- Ground state correlations and mean-field in O
- Shell Model Monte Carlo studies of neutron-rich nuclei in the 1s-0d-1p-0f shells
- Relativistic Effects in the Electromagnetic Current at GeV Energies
- Relativistic Effects in Electromagnetic Meson-Exchange Currents for One-Particle Emission Reactions
Cited by in corpus (46)
- Coupled-cluster computations of atomic nuclei
- Accurate nuclear radii and binding energies from a chiral interaction
- Charge, neutron, and weak size of the atomic nucleus
- Nucleon-Nucleon Correlations, Short-lived Excitations, and the Quarks Within
- Structure of the lightest tin isotopes
- Ab initio coupled-cluster approach to nuclear structure with modern nucleon-nucleon interactions
- Coupled-cluster theory for three-body Hamiltonians
- Medium-mass nuclei from chiral nucleon-nucleon interactions
- Uncertainty analysis and order-by-order optimization of chiral nuclear interactions
- Structure of Ni from first principles computations
- Coupled cluster approach to nuclear physics
- Elastic Electron Scattering from Light Nuclei
- Global sensitivity analysis of bulk properties of an atomic nucleus
- Auxiliary field diffusion Monte Carlo calculations of light and medium-mass nuclei with local chiral interactions
- Charge radii of exotic neon and magnesium isotopes
- Properties of nuclei up to using local chiral interactions
- Ab initio coupled-cluster study of 16-O
- A two-neutron halo is unveiled in F
- Solution of the center-of-mass problem in nuclear structure calculations
- Benchmark calculations for 3H, 4He, 16O and 40Ca with ab-initio coupled-cluster theory
- Atomic nuclei from quantum Monte Carlo calculations with chiral EFT interactions
- Variational calculation of the ground state of closed-shell nuclei up to
- Emergent properties of nuclei from ab initio coupled-cluster calculations
- Coupled-cluster calculations for valence systems around O-16
- What is ab initio in nuclear theory?
- Ab-initio computation of neutron-rich oxygen isotopes
- Electric dipole polarizability from first principles calculations
- Coherent elastic neutrino-nucleus scattering on 40Ar from first principles
- Microscopic optical potentials for calcium isotopes
- Ab initio computation of the longitudinal response function in Ca
- Shell-model coupled-cluster method for open-shell nuclei
- Computing the dipole polarizability of 48Ca with increased precision
- Relativistic and Nuclear Medium Effects on the Coulomb Sum Rule
- Ground state correlations and mean-field in O: Part II
- Coulomb sum rule for He and O from coupled-cluster theory
- Ca transverse response function from coupled-cluster theory
- Emulating \emph{ab initio} computations of infinite nucleonic matter
- Ab initio coupled-cluster and configuration interaction calculations for 16-O using V_UCOM
- Nuclear-matter saturation and symmetry energy within --full chiral effective field theory
- Extraction of the Coulomb Sum Rule, Transverse Enhancement, and Longitudinal Quenching from an Analysis of all Available e-C and e-O Cross Section Data
- Meson-exchange currents in quasielastic electron scattering in a generalized superscaling approach
- How to renormalize coupled cluster theory
- Contribution of Nuclear Excitation Electromagnetic Form Factors in and to the Coulomb Sum Rule
- Many-body interactions and nuclear structure
- Electromagnetic reactions from coupled-cluster theory
- Continuum coupled cluster expansion