arXiv:nucl-th/9412017·v1·Nuclear Theory
Relativistic nuclear structure effects in quasielastic neutrino scattering
Hungchong Kim🇺🇸 · J. Piekarewicz🇺🇸 · C. J. Horowitz🇺🇸
Abstract
Charged-current cross sections are calculated for quasielastic neutrino and antineutrino scattering using a relativistic meson-nucleon model. We examine how nuclear-structure effects, such as relativistic random-phase-approximation (RPA) corrections and momentum-dependent nucleon self-energies, influence the extraction of the axial form factor of the nucleon. RPA corrections are important only at low-momentum transfers. In contrast, the momentum dependence of the relativistic self-energies changes appreciably the value of the axial-mass parameter, , extracted from dipole fits to the axial form factor. Using Brookhaven's experimental neutrino spectrum we estimate the sensitivity of M to various relativistic nuclear-structure effects.
Comments: 26 pages, revtex, 6 postscript figures (available upon request)