Consistency of spectroscopic factors from (e,e'p) reactions at different momentum transfers
arXiv:nucl-th/0203033 · doi:10.1103/PhysRevC.66.014613
Abstract
The possibility to extract relevant information on spectroscopic factors from (e,ep) reactions at high is studied. Recent O(e,ep) data at (GeV/ are compared to a theoretical approach which includes an eikonal description of the final-state interaction of the proton, a microscopic nuclear matter calculation of the damping of this proton, and high-quality quasihole wave functions for -shell nucleons in . Good agreement with the (GeV/ data is obtained when spectroscopic factors are employed which are identical to those required to describe earlier low experiments.
17 pages, 6 figures in .eps format, submitted to Phys. Rev. C
References in corpus (6)
- Faddeev description of two-hole one-particle motion and the single-particle spectral function
- Relativistic mean field approximation to the analysis of 16O(e,e'p)15N data at |Q^2|\leq 0.4 (GeV/c)^2
- Relativistic corrections in (e,e'p) knockout reactions
- Faddeev treatment of long-range correlations and the one-hole spectral function of O16
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Cited by in corpus (7)
- Self-consistent Green's function method for nuclei and nuclear matter
- Neutrino event generators: foundation, status and future
- The dynamics of the quasielastic 16O(e,e'p) reaction at Q^2 = 0.8 (GeV/c)^2
- Spectroscopic Factors in 16O and Nucleon Asymmetry
- Extension of the Random Phase Approximation including the self-consistent coupling to two-phonon contributions
- Effects of nuclear correlations on the O reactions to discrete final states
- Self-consistent Green's function calculation of 16O at small missing energies